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    ANNA UNIVERSITY,CHENNAI

    AFFILIATED INSTITUTIONS

    R - 2013

    B.E. MECHANICAL ENGINEERING

    I VIII SEMESTERS CURRICULUM AND SYLLABUS SEMESTER I

    SEMESTER II

    SL.

    No.

    COURSE

    CODE

    COURSE TITLE L T P C

    THEORY

    1. HS6251 Technical English II 3 1 0 4

    2. MA6251 Mathematics II 3 1 0 4

    3. PH6251 Engineering Physics II 3 0 0 3

    4. !6251 Engineering hemistry II 3 0 0 3

    5. "E6252 #asic Electrical an$ Electr%nics Engineering 4 0 0 4

    6. "E6253 Engineering Mechanics 3 1 0 4

    PRACTICALS

    &. "E6261 %m'(ter Ai$e$ )ra*ting an$ M%$eling

    +a,%rat%ry

    0 1 2 2

    -. "E6262 Physics an$ hemistry +a,%rat%ry II 0 0 2 1

    TOTAL 19 4 4 2

    SL.

    No.

    COURSE

    CODECOURSE TITLE L T P C

    THEORY

    1. HS6151 Technical English I 3 1 0 4

    2. MA6151 Mathematics I 3 1 0 4

    3. PH6151 Engineering Physics I 3 0 0 3

    4. !6151 Engineering hemistry I 3 0 0 35. "E6151 %m'(ter Pr%gramming 3 0 0 3

    6. "E6152 Engineering "ra'hics 2 0 3 4

    PRACTICALS

    &. "E6161 %m'(ter Practices +a,%rat%ry 0 0 3 2

    -. "E6162 Engineering Practices +a,%rat%ry 0 0 3 2

    /. "E6163 Physics an$ hemistry +a,%rat%ry I 0 0 2 1

    TOTAL 1! 2 11 2"

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    SEMESTER III

    SL.NO.

    COURSECODE

    COURSE TITLE L T P C

    THEORY

    1. MA6351 Trans*%rms an$ Partial )i**erential E(ati%ns 3 1 0 42. E6306 Strength %* Materials 3 1 0 4

    3. ME6301 Engineering Therm%$ynamics 3 0 0 34. E6451 l(i$ Mechanics an$ Machinery 3 0 0 3

    5. ME6302 Man(*act(ring Techn%l%gy I 3 0 0 3

    6. EE6351 Electrical )ries an$ %ntr%ls 3 0 0 3PRACTICAL

    &. ME6311 Man(*act(ring Techn%l%gy +a,%rat%ry I 0 0 3 2-. E6461 l(i$ Mechanics an$ Machinery +a,%rat%ry 0 0 3 2

    /. EE6365 Electrical Engineering +a,%rat%ry 0 0 3 2TOTAL 1# 2 9 2"

    SEMESTER IV

    SL.NO.

    COURSECODE

    COURSE TITLE L T P C

    THEORY

    1. MA6452 Statistics an$ (merical Meth%$s 3 1 0 4

    2. ME6401 inematics %* Machinery 3 0 0 33. ME6402 Man(*act(ring Techn%l%gy II 3 0 0 34. ME6403 Engineering Materials an$ Metall(rgy 3 0 0 3

    5. "E6351 Enir%nmental Science an$ Engineering 3 0 0 3

    6. ME6404 Thermal Engineering 3 0 0 3PRACTICAL

    &. ME6411 Man(*act(ring Techn%l%gy +a,%rat%ryII 0 0 3 2-. ME6412 Thermal Engineering +a,%rat%ry I 0 0 3 2

    /. E6315 Strength %* Materials +a,%rat%ry 0 0 3 2TOTAL 1# 1 9 2

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    SEMESTER V

    SL.NO.

    COURSECODE

    COURSE TITLE L T P C

    THEORY

    1. ME6501 %m'(ter Ai$e$ )esign 3 0 0 32. ME6502 Heat an$ Mass Trans*er 3 0 0 3

    3. ME6503 )esign %* Machine Elements 3 0 0 34. ME6504 Metr%l%gy an$ Meas(rements 3 0 0 3

    5. ME6505 )ynamics %* Machines 3 0 0 3

    6. "E60&5 Pr%*essi%nal Ethics in Engineering 3 0 0 3

    PRACTICAL&. ME6511 )ynamics +a,%rat%ry 0 0 3 2

    -. ME6512 Thermal Engineering +a,%rat%ryII 0 0 3 2

    /. ME6513 Metr%l%gy an$ Meas(rements +a,%rat%ry 0 0 3 2TOTAL 1# 0 9 24

    SEMESTER VISL.NO.

    COURSECODE

    COURSE TITLE L T P C

    THEORY

    1. ME6601 )esign %* Transmissi%n Systems 3 0 0 32. M"6-51 Princi'les %* Management 3 0 0 3

    3. ME6602 A(t%m%,ile Engineering 3 0 0 34. ME6603 inite Element Analysis 3 0 0 3

    5. ME6604 "as )ynamics an$ et Pr%'(lsi%n 3 0 0 3

    6. Electie I 3 0 0 3PRACTICAL

    &. ME6611 .A.). .A.M. +a,%rat%ry 0 0 3 2

    -. ME6612 )esign an$ a,ricati%n Pr%7ect 0 0 4 2/. "E66&4 %mm(nicati%n an$ S%*t S8ills

    +a,%rat%ry #ase$0 0 4 2

    TOTAL 1# 0 11 24

    SEMESTER VIISL.NO.

    COURSECODE

    COURSE TITLE L T P C

    THEORY

    1. ME6&01 P%9er Plant Engineering 3 0 0 3

    2. ME6&02 Mechatr%nics 3 0 0 33.

    ME6&03%m'(ter Integrate$ Man(*act(ringSystems 3 0 0 3

    4. "E6&5& T%tal :(ality Management 3 0 0 3

    5. Electie II 3 0 0 36. Electie III 3 0 0 3

    PRACTICAL

    &. ME6&11 Sim(lati%n an$ Analysis +a,%rat%ry 0 0 3 2-. ME6&12 Mechatr%nics +a,%rat%ry 0 0 3 2

    /. ME6&13 %m'rehensi%n 0 0 2 1

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    TOTAL 1# 0 # 23

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    SEMESTER VIII

    SL.NO.

    COURSECODE

    COURSE TITLE L T P C

    THEORY

    1. M"6-63 Engineering Ec%n%mics 3 0 0 3

    2. Electie I; 3 0 0 33. Electie ; 3 0 0 3

    PRACTICAL

    4. ME6-11 Pr%7ect

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    SEMESTERVIIIE&'()*+' IV

    SL.NO.

    COURSECODE

    COURSE TITLE L T P C

    1. IE6605 Pr%$(cti%n Planning an$ %ntr%l 3 0 0 3

    2. M"60&1 Entre'rene(rshi' )eel%'ment 3 0 0 3

    3. ME6013 )esign %* Press(re ;essels an$ Pi'ing 3 0 0 34. ME6014 %m'(tati%nal l(i$ )ynamics 3 0 0 3

    5. ME6015 'erati%ns =esearch 3 0 0 36. "E60-4 H(man =ights 3 0 0 3

    E&'()*+' V

    SL.NO.

    COURSECODE

    COURSE TITLE L T P C

    1. ME6016 A$ance$ I.. Engines 3 0 0 3

    2. ME601& )esign %* Heat E@changers 3 0 0 3

    3. ME601- A$$itie Man(*act(ring 3 0 0 3

    4. ME601/ %n )estr(ctie Testing an$ Materials 3 0 0 3

    5. ME6020 ;i,rati%n an$ %ise %ntr%l 3 0 0 3

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    HS"11 TECHNICAL ENGLISH I L T P C3 1 0 4

    OB-ECTIVES

    T% ena,le learners %* Engineering an$ Techn%l%gy $eel%' their ,asic c%mm(nicati%n s8ills in

    English.

    T% em'hasiBe s'ecially the $eel%'ment %* s'ea8ing s8ills am%ngst learners %* Engineering an$

    Techn%l%gy.

    T% ens(re that learners (se the electr%nic me$ia s(ch as internet an$ s(''lement the learning

    materials (se$ in the classr%%m. T% inc(lcate the ha,it %* rea$ing an$ 9riting lea$ing t% e**ectie an$ e**icient c%mm(nicati%n.

    UNIT I 9/3+istening Intr%$(cing learners t% "IE Ty'es %* listening +istening t% a($i% Cer,al D s%(n$sFS'ea8ing S'ea8ing a,%(t %neGs 'lace? im'%rtant *estials etc. Intr%$(cing %nesel*? %neGs *amily *rien$F =ea$ing S8imming a rea$ing 'assage Scanning *%r s'eci*ic in*%rmati%n %tema8ingF

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    UNIT V 9/3+istening +istening t% $i**erent accents? +istening t% S'eechesPresentati%ns? +istening t% ,r%a$castan$ telecast *r%m =a$i% an$ T;F S'ea8ing "iing im'r%m't( tal8s? Ma8ing 'resentati%ns %n gient%'icsF =ea$ing Email c%mm(nicati%n =ea$ing the attachment *iles haing a '%em7%8e'r%er, Sen$ing their res'%nses thr%(gh emailF niersity. Min$sca'es English *%r Techn%l%gists an$Engineers. rient #lac8s9an? hennai. 2012

    2. )hanael? S.P. English an$ %mm(nicati%n S8ills *%r St($ents %* Science an$ Engineering.rient #lac8s9an? hennai. 2011

    REFERENCES1. =aman? Meena8shi D Sangeetha Sharma. Technical %mm(nicati%n Princi'les an$ Practice.

    @*%r$ >niersity Press? e9 )elhi. 2011.2. =egi%nal Instit(te %* English. English *%r Engineers. am,ri$ge >niersity Press? e9 )elhi.

    2006.3. =iBi? Ashra*. M. E**ectie Technical %mm(nicati%n. Tata Mc"ra9Hill? e9 )elhi. 20054. =(ther*%r$? An$rea. #asic %mm(nicati%n S8ills *%r Techn%l%gy. Pears%n? e9 )elhi. 2001.

    5. ;is9am%han? Aysha. English *%r Technical %mm(nicati%n. Tata Mc"ra9Hill? e9 )elhi.200-.

    ETENSIVE R'5*67 No) 8o E:;*6)*o61. alam? A,$(l. niersities Press? Hy$era,a$. 1///.

    $EBSITES1. htt'999.(singenglish.c%m2. htt'999.(e*a'.c%m

    TEACHING METHODS

    +ect(res

    Actiities c%n$(cte$ in$ii$(ally? in 'airs an$ in gr%('s li8e sel* intr%$(cti%n? 'eer intr%$(cti%n?gr%(' '%ster ma8ing? grammar an$ %ca,(lary games? etc.

    )isc(ssi%ns

    =%le 'lay actiities

    Sh%rt 'resentati%ns

    +istening an$ ie9ing actiities 9ith *%ll%9 (' actiities li8e $isc(ssi%n? *illing (' 9%r8sheets?

    9riting e@ercises C(sing lang(age la, 9hereer necessary'%ssi,le etc.

    http://www.usingenglish.com/http://www.uefap.com/http://www.uefap.com/http://www.usingenglish.com/
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    EVALUATION PATTERN

    I6)'6&

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    UNIT III APPLICATIONS OF DIFFERENTIAL CALCULUS 9/3(rat(re in artesian c%%r$inates entre an$ ra$i(s %* c(rat(re ircle %* c(rat(re E%l(tes

    Enel%'es E%l(te as enel%'e %* n%rmals.

    UNIT IV DIFFERENTIAL CALCULUS OF SEVERAL VARIABLES 9/3+imits an$ %ntin(ity Partial $eriaties T%tal $eriatie )i**erentiati%n %* im'licit *(ncti%ns ac%,ian an$ 'r%'erties Tayl%rGs series *%r *(ncti%ns %* t9% aria,les Ma@ima an$ minima %*

    *(ncti%ns %* t9% aria,les +agrangeGs meth%$ %* (n$etermine$ m(lti'liers.

    UNIT V MULTIPLE INTEGRALS 9/3)%(,le integrals in cartesian an$ '%lar c%%r$inates hange %* %r$er %* integrati%n Area encl%se$,y 'lane c(res hange %* aria,les in $%(,le integrals Area %* a c(re$ s(r*ace Tri'le integrals

    ;%l(me %* S%li$s.TOTAL L4/T1 "0 PERIODS

    OUTCOMES

    This c%(rse e(i's st($ents t% hae ,asic 8n%9le$ge an$ (n$erstan$ing in %ne *iel$s %*

    materials? integral an$ $i**erential calc(l(s.

    TET BOOS

    1. #ali . P an$ Manish "%yal? A Te@t ,%%8 %* Engineering MathematicsJ? Eighth E$iti%n? +a@miP(,licati%ns Pt +t$.? 2011.

    2. "re9al. #.S? Higher Engineering MathematicsJ? 41st E$iti%n? hanna P(,licati%ns? )elhi?

    2011.

    REFERENCES1. )ass? H..? an$ Er. =a7nish ;erma?J Higher Engineering MathematicsJ? S. han$ Priate +t$.?

    2011.2. "lyn ames? A$ance$ M%$ern Engineering MathematicsJ? 3

    r$E$iti%n? Pears%n E$(cati%n?

    2012.3. Peter ;. Geil?J A$ance$ Engineering MathematicsJ? &th E$iti%n? engage learning? 2012.4. =amana #.;? Higher Engineering MathematicsJ? Tata Mc"ra9 Hill P(,lishing

    %m'any? e9 )elhi? 200-.5. Siarama rishna )as P. an$ =(8manga$achari E.? Engineering MathematicsJ? ;%l(me I?

    Sec%n$ E$iti%n? PEA=S P(,lishing? 2011.

    PH"11 ENGINEERING PHYSICS I L T P C3 0 0 3

    OB-ECTIVES

    T% enhance the *(n$amental 8n%9le$ge in Physics an$ its a''licati%ns releant t% ari%(sstreams %* Engineering an$ Techn%l%gy.

    UNIT I CRYSTAL PHYSICS 9+attice >nit cell #raais lattice +attice 'lanes Miller in$ices $ s'acing in c(,ic lattice alc(lati%n %* n(m,er %* at%ms 'er (nit cell At%mic ra$i(s %%r$inati%n n(m,er Pac8ing *act%r*%r S? #? an$ HP str(ct(res )iam%n$ an$ gra'hite str(ct(res C(alitatie treatment rystal gr%9th techni(es s%l(ti%n? melt C#ri$gman an$ B%chrals8i an$ a'%(r gr%9th techni(esC(alitatie

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    UNIT II PROPERTIES OF MATTER AND THERMAL PHYSICS 9Elasticity H%%8eGs la9 =elati%nshi' ,et9een three m%$(lii %* elasticity C(alitatie stress strain$iagram P%iss%nGs rati% act%rs a**ecting elasticity #en$ing m%ment )e'ressi%n %* a cantileer

    !%(ngGs m%$(l(s ,y (ni*%rm ,en$ing Isha'e$ gir$ersM%$es %* heat trans*er thermal c%n$(ctiity e9t%nGs la9 %* c%%ling +inear heat *l%9 +eeGs $iscmeth%$ =a$ial heat *l%9 =(,,er t(,e meth%$ c%n$(cti%n thr%(gh c%m'%(n$ me$ia Cseries an$'arallel

    UNIT III >UANTUM PHYSICS 9#lac8 ,%$y ra$iati%n Planc8Gs the%ry C$eriati%n )e$(cti%n %* niersity Physics? 200/2. Mani P. Engineering Physics I. )hanam P(,licati%ns? 20113. Mari8ani A. Engineering Physics. PHI +earning Pt.? In$ia? 200/4. Palanisamy P.. Engineering Physics. SITEH P(,licati%ns? 20115. =a7ag%'al . Engineering Physics. PHI? e9 )elhi? 20116. Senthil8(mar ". Engineering Physics I. ;=# P(,lishers? 2011.

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    CY"11 ENGINEERING CHEMISTRY I L T P C3 0 0 3

    OB-ECTIVES

    T% ma8e the st($ents c%nersant 9ith ,asics %* '%lymer chemistry.

    T% ma8e the st($ent ac(ire s%(n$ 8n%9le$ge %* sec%n$ la9 %* therm%$ynamics an$sec%n$ la9 ,ase$ $eriati%ns %* im'%rtance in engineering a''licati%ns in all $isci'lines.

    T% ac(aint the st($ent 9ith c%nce'ts %* im'%rtant 'h%t%'hysical an$ 'h%t%chemical

    'r%cesses an$ s'ectr%sc%'y. T% $eel%' an (n$erstan$ing %* the ,asic c%nce'ts %* 'hase r(le an$ its a''licati%ns t%

    single an$ t9% c%m'%nent systems an$ a''reciate the '(r'%se an$ signi*icance %* all%ys.

    T% ac(aint the st($ents 9ith the ,asics %* nan% materials? their 'r%'erties an$a''licati%ns.

    UNIT I POLYMER CHEMISTRY 9Intr%$(cti%n lassi*icati%n %* '%lymers at(ral an$ syntheticF Therm%'lastic an$ Therm%setting.(ncti%nality )egree %* '%lymeriBati%n. Ty'es an$ mechanism %* '%lymeriBati%n A$$iti%n Cree=a$ical? cati%nic an$ ani%nicF c%n$ensati%n an$ c%'%lymeriBati%n. Pr%'erties %* '%lymers Tg?Tacticity? M%lec(lar 9eight 9eight aerage? n(m,er aerage an$ '%ly$is'ersity [email protected](es %* '%lymeriBati%n #(l8? em(lsi%n? s%l(ti%n an$ s(s'ensi%n. Pre'arati%n? 'r%'erties

    an$ (ses %* yl%n 6?6? an$ E'%@y resin.

    UNIT II CHEMICAL THERMODYNAMICS 9Termin%l%gy %* therm%$ynamics Sec%n$ la9 Entr%'y entr%'y change *%r an i$eal gas?reersi,le an$ irreersi,le 'r%cessesF entr%'y %* 'hase transiti%nsF la(si(s ine(ality. reeenergy an$ 9%r8 *(ncti%n Helmh%ltB an$ "i,,s *ree energy *(ncti%ns C'r%,lemsF riteria %*s'%ntaneityF "i,,sHelmh%ltB e(ati%n C'r%,lemsF la(si(sla'eyr%n e(ati%nF Ma@9ellrelati%ns ;anGt H%** is%therm an$ is%ch%reC'r%,lems.

    UNIT III PHOTOCHEMISTRY AND SPECTROSCOPY 9Ph%t%chemistry +a9s %* 'h%t%chemistry "r%tth(ss)ra'er la9? Star8Einstein la9 an$ +am,ert#eer +a9. :(ant(m e**iciency $eterminati%n Ph%t% 'r%cesses Internal %nersi%n? Inter

    system cr%ssing? l(%rescence? Ph%s'h%rescence? hemil(minescence an$ Ph%t%sensitiBati%n.S'ectr%sc%'y Electr%magnetic s'ectr(m A,s%r'ti%n %* ra$iati%n Electr%nic? ;i,rati%nal an$r%tati%nal transiti%ns. >;isi,le an$ I= s'ectr%sc%'y 'rinci'les? instr(mentati%n C#l%c8 $iagram%nly.

    UNIT IV PHASE RULE AND ALLOYS 9Phase r(le Intr%$(cti%n? $e*initi%n %* terms 9ith e@am'les? ne %m'%nent System 9ater system =e$(ce$ 'hase r(le T9% %m'%nent Systems classi*icati%n lea$siler system? Bincmagnesi(m system. All%ys Intr%$(cti%n )e*initi%n Pr%'erties %* all%ys Signi*icance %* all%ying?(ncti%ns an$ e**ect %* all%ying elements err%(s all%ys ichr%me an$ Stainless steel heattreatment %* steelF %n*err%(s all%ys ,rass an$ ,r%nBe.

    UNIT V NANOCHEMISTRY 9#asics $istincti%n ,et9een m%lec(les? nan%'articles an$ ,(l8 materialsF siBe$e'en$ent'r%'erties. an%'articles nan% cl(ster? nan% r%$? nan%t(,eCT an$ nan%9ire. Synthesis'reci'itati%n? therm%lysis? hy$r%thermal? s%l%thermal? electr%$e '%siti%n? chemical a'%(r$e'%siti%n? laser a,lati%nF Pr%'erties an$ a''licati%ns

    TOTAL 4 PERIODSOUTCOMES

    The 8n%9le$ge gaine$ %n '%lymer chemistry? therm%$ynamics. s'ectr%sc%'y? 'hase r(le

    an$ nan% materials 9ill 'r%i$e a str%ng 'lat*%rm t% (n$erstan$ the c%nce'ts %n theses(,7ects *%r *(rther learning.

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    TET BOOS1. ain P.. an$ M%nica ain? Engineering hemistryJ? )han'at =ai P(,lishing %m'any CP

    +t$.? e9 )elhi? 20102. annan P.? =ai8rishnan A.? Engineering hemistryJ? Sri rishna Hitech P(,lishing

    %m'any Pt. +t$. hennai? 200/

    REFERENCES

    1. )ara S.S? >mare S.S? Engineering hemistryJ? S. han$ D %m'any +t$.? e9 )elhi2010

    2. Siasan8ar #.? Engineering hemistryJ? Tata Mc"ra9Hill P(,lishing %m'any? +t$.? e9)elhi? 200-.

    3. "%9ari8er ;.=. ? ;is9anathan .;. an$ aya$eSree$har? P%lymer ScienceJ? e9 AgeInternati%nal P C+t$.?? hennai? 2006.

    4. Bin ". A. an$ Arsena(lt A. .? an%chemistry A hemical A''r%ach t% an%materialsJ?=S P(,lishing? 2005.

    GE"11 COMPUTER PROGRAMMING L T P C3 0 0 3

    OB-ECTIVEST?'

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    UNIT V STRUCTURES AND UNIONS 9Intr%$(cti%n nee$ *%r str(ct(re $ata ty'e str(ct(re $e*initi%n Str(ct(re $eclarati%n Str(ct(re9ithin a str(ct(re >ni%n Pr%grams (sing str(ct(res an$ >ni%ns St%rage classes? Pre'r%cess%r$irecties.

    OUTCOMESA) )?' '65 o8 )?' (o@

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    UNIT III PRO-ECTION OF SOLIDS /9Pr%7ecti%n %* sim'le s%li$s li8e 'risms? 'yrami$s? cylin$er? c%ne an$ tr(ncate$ s%li$s 9hen the a@is isincline$ t% %ne %* the 'rinci'al 'lanes ,y r%tating %,7ect meth%$ an$ a(@iliary 'lane meth%$.

    UNIT IV PRO-ECTION OF SECTIONED SOLIDS AND DEVELOPMENT OFSURFACES /9

    Secti%ning %* a,%e s%li$s in sim'le ertical '%siti%n 9hen the c(tting 'lane is incline$ t% the %ne %*

    the 'rinci'al 'lanes an$ 'er'en$ic(lar t% the %ther %,taining tr(e sha'e %* secti%n. )eel%'ment %*lateral s(r*aces %* sim'le an$ secti%ne$ s%li$s Prisms? 'yrami$s cylin$ers an$ c%nes. )eel%'ment %*lateral s(r*aces %* s%li$s 9ith c(t%(ts an$ h%les

    UNIT V ISOMETRIC AND PERSPECTIVE PRO-ECTIONS "/9Princi'les %* is%metric 'r%7ecti%n is%metric scale Is%metric 'r%7ecti%ns %* sim'le s%li$s an$tr(ncate$ s%li$s Prisms? 'yrami$s? cylin$ers? c%nes c%m,inati%n %* t9% s%li$ %,7ects in sim'leertical '%siti%ns an$ miscellane%(s 'r%,lems. Pers'ectie 'r%7ecti%n %* sim'le s%li$sPrisms?'yrami$s an$ cylin$ers ,y is(al ray meth%$ .

    COMPUTER AIDED DRAFTING D';o6

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    4. IS 1166/ 1/-6 D SP 46 2003 )imensi%ning %* Technical )ra9ings.5. IS 15021 CParts 1 t% 4 2001 Technical $ra9ings Pr%7ecti%n Meth%$s.

    S'(*& o*6)< &*(&' )o U6*+'

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    GE"1"2 ENGINEERING PRACTICES LABORATORY L T P C0 0 3 2

    OB-ECTIVES

    T% 'r%i$e e@'%s(re t% the st($ents 9ith han$s %n e@'erience %n ari%(s ,asic engineering

    'ractices in iil? Mechanical? Electrical an$ Electr%nics Engineering.

    GROUP A CIVIL MECHANICAL

    I CIVIL ENGINEERING PRACTICE 9

    B@*&5*67

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    C, %(n$ry %'erati%ns li8e m%(l$ 're'arati%n *%r gear an$ ste' c%ne '(lley.Cc itting E@ercises Pre'arati%n %* s(are *itting an$ ee *itting m%$els.

    GROUP B ELECTRICAL ELECTRONICS

    III ELECTRICAL ENGINEERING PRACTICE 101. =esi$ential h%(se 9iring (sing s9itches? *(se? in$icat%r? lam' an$ energy meter.

    2. l(%rescent lam' 9iring.3. Stair case 9iring4. Meas(rement %* electrical (antities %ltage? c(rrent? '%9er D '%9er *act%r in =+ circ(it.5. Meas(rement %* energy (sing single 'hase energy meter.6. Meas(rement %* resistance t% earth %* an electrical e(i'ment.

    I; ELECTRONICS ENGINEERING PRACTICE 131. St($y %* Electr%nic c%m'%nents an$ e(i'ments =esist%r? c%l%(r c%$ing meas(rement

    %* A signal 'arameter C'ea8'ea8? rms 'eri%$? *re(ency (sing =.2. St($y %* l%gic gates A)? =? E= an$ T.3. "enerati%n %* l%c8 Signal.4. S%l$ering 'ractice %m'%nents )eices an$ irc(its >sing general '(r'%se

    P#.5. Meas(rement %* ri''le *act%r %* H

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    MECHANICAL

    1. Arc 9el$ing trans*%rmer 9ith ca,les an$ h%l$ers 5 %s.2.

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    OUTCOMES

    The han$s %n e@ercises (n$erg%ne ,y the st($ents 9ill hel' them t% a''ly 'hysics 'rinci'les

    %* %'tics an$ thermal 'hysics t% eal(ate engineering 'r%'erties %* materials.

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS1. )i%$e laser? lyc%'%$i(m '%9$er? glass 'late? %'tical *i,er.2. >ltras%nic inter*er%meter

    3. S'ectr%meter? merc(ry lam'? grating4. +eeGs )isc e@'erimental set ('5. Traeling micr%sc%'e? meter scale? 8ni*e e$ge? 9eights6. arey *%sterGs ,ri$ge set ('

    Cernier ali'er? Scre9 ga(ge? rea$ing lens are re(ire$ *%r m%st %* the e@'eriments

    CHEMISTRY LABORATORY I

    OB-ECTIVES

    T% ma8e the st($ent t% ac(ire 'ractical s8ills in the $eterminati%n %* 9ater (ality

    'arameters thr%(gh %l(metric an$ instr(mental analysis.

    T% ac(aint the st($ents 9ith the $eterminati%n %* m%lec(lar 9eight %* a '%lymer ,yac%metry.

    LIST OF EPERIMENTSCAny I;E E@'eriments1 )eterminati%n %* ) c%ntent %* 9ater sam'le ,y UIPMENT FOR A BATCH OF 30 STUDENTS1. I%$ine *las8 30 %s2. 'H meter 5 %s3. %n$(ctiity meter 5 %s4. S'ectr%'h%t%meter 5 %s5. st9al$ ;isc%meter 10 %s

    Co;;o6 A)@< P*'))', B@'))', (o6*(& 8&

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    HS"21 TECHNICAL ENGLISH II L T P C3 1 0 4

    OB-ECTIVES

    T% ma8e learners ac(ire listening an$ s'ea8ing s8ills in ,%th *%rmal an$ in*%rmal c%nte@ts.

    T% hel' them $eel%' their rea$ing s8ills ,y *amiliariBing them 9ith $i**erent ty'es %* rea$ingstrategies.

    T% e(i' them 9ith 9riting s8ills nee$e$ *%r aca$emic as 9ell as 9%r8'lace c%nte@ts.

    T% ma8e them ac(ire lang(age s8ills at their %9n 'ace ,y (sing ematerials an$ lang(age la,c%m'%nents.

    UNIT I 9/3+istening +istening t% in*%rmal c%nersati%ns an$ 'artici'atingF S'ea8ing 'ening a c%nersati%nCgreetings? c%mments %n t%'ics li8e 9eather T(rn ta8ing l%sing a c%nersati%n Ce@c(ses?general 9ish? '%sitie c%mment? than8sF =ea$ing )eel%'ing analytical s8ills? )e$(ctie an$in$(ctie reas%ning E@tensie rea$ingF sing em%tic%nsG as sym,%ls in email messagesF "rammar =eg(lar an$ irreg(larer,s Actie an$ 'assie %iceF ;%ca,(lary H%m%nyms Ce.g. canG H%m%'h%nes Ce.g. s%meG?s(mGF Ematerials Interactie e@ercise %n "rammar an$ %ca,(lary ,l%ggingF +ang(age +a, +istening t% $i**erent ty'es %* c%nersati%n an$ ans9ering (esti%ns.

    UNIT II 9/3+istening +istening t% sit(ati%n ,ase$ $ial%g(esF S'ea8ing %nersati%n 'ractice in real li*esit(ati%ns? as8ing *%r $irecti%ns C(sing '%lite e@'ressi%ns? giing $irecti%ns C(sing im'eratiesentences? P(rchasing g%%$s *r%m a sh%'? )isc(ssing ari%(s as'ects %* a *ilm Cthey hae alrea$yseen %r a ,%%8 Cthey hae alrea$y rea$F =ea$ing =ea$ing a sh%rt st%ry %r an article *r%mne9s'a'er? ritical rea$ing? %m'rehensi%n s8illsF

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    "rammar an$ ;%ca,(lary )i**erent *%rms %* rNs(mNs illing (' a rNs(mN c%er letterF +ang(age+a, Tele'h%nic interie9 rec%r$ing the res'%nses erNs(mN 9riting.

    UNIT V 9/3+istening ;ie9ing a m%$el gr%(' $isc(ssi%n an$ reie9ing the 'er*%rmance %* each 'artici'ant I$enti*ying the characteristics %* a g%%$ listenerF S'ea8ing "r%(' $isc(ssi%n s8ills initiating the$isc(ssi%n e@changing s(ggesti%ns an$ 'r%'%sals e@'ressing $issentagreement assertieness

    in e@'ressing %'ini%ns min$ ma''ing techni(eF =ea$ing %te ma8ing s8ills ma8ing n%tes *r%m,%%8s? %r any *%rm %* 9ritten materials Intensie rea$ingF niersity. Min$sca'es English *%r Techn%l%gists an$

    Engineers. rient #lac8s9an? hennai. 20122. )hanael? S.P. English an$ %mm(nicati%n S8ills *%r St($ents %* Science an$ Engineering.

    rient #lac8s9an? hennai. 2011

    REFERENCES1. An$ers%n? Pa(l ;. Technical %mm(nicati%n A =ea$erentere$ A''r%ach. engage. e9

    )elhi. 200-2. M(rali8rishna? D S(nita Mishra. %mm(nicati%n S8ills *%r Engineers. Pears%n? e9 )elhi.

    20113. =i%r$an? )aniel. ". Technical %mm(nicati%n. engage +earning? e9 )elhi. 20054. Sharma? Sangeetha D #in%$ Mishra. %mm(nicati%n S8ills *%r Engineers an$ Scientists. PHI

    +earning? e9 )elhi. 200/5. Smith

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    TEACHING METHODS

    +ect(res

    Actiities c%n$(cte$ in$ii$(ally? in 'airs an$ in gr%('s li8e in$ii$(al 9riting an$

    'resentati%ns? gr%(' $isc(ssi%ns? interie9s? re'%rting? etc +%ng 'resentati%ns (sing is(al ai$s

    +istening an$ ie9ing actiities 9ith *%ll%9 (' actiities li8e $isc(ssi%ns? *illing (' 9%r8sheets?9riting e@ercises C(sing lang(age la, 9hereer necessary'%ssi,le etc

    Pr%7ects li8e gr%(' re'%rts? m%c8 interie9s etc (sing a c%m,inati%n %* t9% %r m%re %* thelang(age s8ills

    EVALUATION PATTERN

    I6)'6&

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    UNIT I VECTOR CALCULUS 9/3"ra$ient? $iergence an$ c(rl )irecti%nal $eriatie Irr%tati%nal an$ s%len%i$al ect%r *iel$s ;ect%r integrati%n "reenGs the%rem in a 'lane? "a(ss $iergence the%rem an$ St%8esG the%remCe@cl($ing 'r%%*s Sim'le a''licati%ns in%ling c(,es an$ rectang(lar 'arallel%'i'e$s.

    UNIT II ORDINARY DIFFERENTIAL E>UATIONS 9/3Higher %r$er linear $i**erential e(ati%ns 9ith c%nstant c%e**icients Meth%$ %* ariati%n %*

    'arameters a(chyGs an$ +egen$reGs linear e(ati%ns Sim(ltane%(s *irst %r$er linear e(ati%ns9ith c%nstant c%e**icients.

    UNIT III LAPLACE TRANSFORM 9/3+a'lace trans*%rm S(**icient c%n$iti%n *%r e@istence Trans*%rm %* elementary *(ncti%ns #asic'r%'erties Trans*%rms %* $eriaties an$ integrals %* *(ncti%ns )eriaties an$ integrals %*trans*%rms Trans*%rms %* (nit ste' *(ncti%n an$ im'(lse *(ncti%ns Trans*%rm %* 'eri%$ic *(ncti%ns.Inerse +a'lace trans*%rm Statement %* %n%l(ti%n the%rem Initial an$ *inal al(e the%rems S%l(ti%n %* linear )E %* sec%n$ %r$er 9ith c%nstant c%e**icients (sing +a'lace trans*%rmati%ntechni(es.

    UNIT IV ANALYTIC FUNCTIONS 9/3

    (ncti%ns %* a c%m'le@ aria,le Analytic *(ncti%ns ecessary c%n$iti%ns a(chy=iemanne(ati%ns an$ s(**icient c%n$iti%ns Ce@cl($ing 'r%%*s Harm%nic an$ %rth%g%nal 'r%'erties %*analytic *(ncti%n Harm%nic c%n7(gate %nstr(cti%n %* analytic *(ncti%ns %n*%rmal ma''ing 9 O

    B8? 8B? 1B? B2? e

    Ban$ ,ilinear trans*%rmati%n.

    UNIT V COMPLE INTEGRATION 9/3%m'le@ integrati%n Statement an$ a''licati%ns %* a(chyGs integral the%rem an$ a(chyGs integral*%rm(la Tayl%rGs an$ +a(rentGs series e@'ansi%ns Sing(lar '%ints =esi$(es a(chyGs resi$(ethe%rem Eal(ati%n %* real $e*inite integrals as c%nt%(r integrals ar%(n$ (nit circle an$ semicircleCe@cl($ing '%les %n the real a@is.

    TOTAL L4/T1 "0 PERIODSOUTCOMES

    The s(,7ect hel's the st($ents t% $eel%' the *(n$amentals an$ ,asic c%nce'ts in ect%rcalc(l(s? )E? +a'lace trans*%rm an$ c%m'le@ *(ncti%ns. St($ents 9ill ,e a,le t% s%le'r%,lems relate$ t% engineering a''licati%ns ,y (sing these techni(es.

    TET BOOS1. #ali . P an$ Manish "%yal? A Te@t ,%%8 %* Engineering MathematicsJ? Eighth E$iti%n? +a@mi

    P(,licati%ns Pt +t$.?2011.st

    2. "re9al. #.S? Higher Engineering MathematicsJ? 412011.

    E$iti%n? hanna P(,licati%ns? )elhi?

    REFERENCES1. )ass? H..? an$ Er. =a7nish ;erma?J Higher Engineering MathematicsJ?

    S. han$ Priate +t$.? 20112. "lyn ames? A$ance$ M%$ern Engineering MathematicsJ? 3

    r$E$iti%n? Pears%n E$(cati%n?

    2012.3. Peter ;. Geil?J A$ance$ Engineering MathematicsJ? &th E$iti%n? engage learning? 2012.4. =amana #.;? Higher Engineering MathematicsJ? Tata Mc"ra9 Hill P(,lishing %m'any? e9

    )elhi? 200-.5. Siarama rishna )as P. an$ =(8manga$achari E.? Engineering MathematicsJ ;%l(me II?

    Sec%n$ E$iti%n? PEA=S P(,lishing? 2011.

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    PH"21 ENGINEERING PHYSICS II L T P C3 0 0 3

    OB-ECTIVES

    T% enrich the (n$erstan$ing %* ari%(s ty'es %* materials an$ their a''licati%ns in engineering

    an$ techn%l%gy.

    UNIT I CONDUCTING MATERIALS 9

    %n$(ct%rs classical *ree electr%n the%ry %* metals Electrical an$ thermal c%n$(ctiity I)?cry%tr%n? magnetic leitati%n.

    UNIT IV DIELECTRIC MATERIALS 9Electrical s(sce'ti,ility $ielectric c%nstant electr%nic? i%nic? %rientati%nal an$ s'ace charge'%lariBati%n *re(ency an$ tem'erat(re $e'en$ence %* '%larisati%n internal *iel$ la(ssi(s M%s%tti relati%n C$eriati%n $ielectric l%ss $ielectric ,rea8$%9n (ses %* $ielectric materials

    Cca'acit%r an$ trans*%rmer *err%electricity an$ a''licati%ns.

    UNIT V ADVANCED ENGINEERING MATERIALS 9Metallic glasses 're'arati%n? 'r%'erties an$ a''licati%ns. Sha'e mem%ry all%ys CSMAharacteristics? 'r%'erties %* iTi all%y? a''licati%n? an%materials Pre'arati%n '(lse$ laser$e'%siti%n chemical a'%(r $e'%siti%n A''licati%ns + materials #ire*ringence %'tical erre**ect lassi*icati%n %* #i%materials an$ its a''licati%ns

    TOTAL 4 PERIODSOUTCOMES

    The st($ents 9ill hae the 8n%9le$ge %n 'hysics %* materials an$ that 8n%9le$ge 9ill ,e (se$,y them in $i**erent engineering an$ techn%l%gy a''licati%ns.

    TET BOOS1. Ar(m(gam M.? Materials Science. An(ra$ha '(,lishers? 20102. Pillai S..? S%li$ State Physics. e9 Age Internati%nalCP +t$.? '(,lishers? 200/

    REFERENCES1. Palanisamy P.. Materials Science. SITEH P(,lishers? 20112. Senthil8(mar ". Engineering Physics II. ;=# P(,lishers? 20113. Mani P. Engineering Physics II. )hanam P(,licati%ns? 20114. Mari8ani A. Engineering Physics. PHI +earning Pt.? In$ia? 200/

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    CY"21 ENGINEERING CHEMISTRY II L T P C3 0 0 3

    OB-ECTIVES

    T% ma8e the st($ents c%nersant 9ith ,%iler *ee$ 9ater re(irements? relate$ 'r%,lems

    an$ 9ater treatment techni(es.

    Princi'les %* electr%chemical reacti%ns? re$%@ reacti%ns in c%rr%si%n %* materials an$

    meth%$s *%r c%rr%si%n 'reenti%n an$ 'r%tecti%n %* materials.

    Princi'les an$ generati%n %* energy in ,atteries? n(clear react%rs? s%lar cells? 9in$ mills

    an$ *(el cells. Pre'arati%n? 'r%'erties an$ a''licati%ns %* engineering materials.

    Ty'es %* *(els? cal%ri*ic al(e calc(lati%ns? man(*act(re %* s%li$? li(i$ an$ gase%(s *(els.

    UNIT I $ATER TECHNOLOGY 9Intr%$(cti%n t% ,%iler *ee$ 9aterre(irements*%rmati%n %* $e'%sits in steam ,%ilers an$ heate@changers $isa$antages C9astage %* *(els? $ecrease in e**iciency? ,%iler e@'l%si%n 'reenti%n%* scale *%rmati%n s%*tening %* har$ 9ater e@ternal treatment Be%lite an$ $emineraliBati%n internal treatment ,%iler c%m'%(n$s C'h%s'hate? calg%n? car,%nate? c%ll%i$al ca(sticem,rittlement ,%iler c%rr%si%n'riming an$ *%aming $esalinati%n %* ,rac8ish 9ater reerse%sm%sis.

    UNIT II ELECTROCHEMISTRY AND CORROSION 9Electr%chemical cell re$%@ reacti%n? electr%$e '%tential %rigin %* electr%$e '%tential %@i$ati%n'%tential re$(cti%n '%tential? meas(rement an$ a''licati%ns electr%chemical series an$ itssigni*icance ernst e(ati%n C$eriati%n an$ 'r%,lems. %rr%si%n ca(ses *act%rs ty'eschemical? electr%chemical c%rr%si%n Cgalanic? $i**erential aerati%n? c%rr%si%n c%ntr%l materialselecti%n an$ $esign as'ects electr%chemical 'r%tecti%n sacri*icial an%$e meth%$ an$im'resse$ c(rrent cath%$ic meth%$. Paints c%nstit(ents an$ *(ncti%n. Electr%'lating %* %''eran$ electr%less 'lating %* nic8el.

    UNIT III ENERGY SOURCES 9Intr%$(cti%n n(clear energy n(clear *issi%n c%ntr%lle$ n(clear *issi%n n(clear *(si%n $i**erences,et9een n(clear *issi%n an$ *(si%n n(clear chain reacti%ns n(clear react%r '%9er generat%rclassi*icati%n %* n(clear react%r light 9ater react%r ,ree$er react%r s%lar energy c%nersi%ns%lar cells 9in$ energy. #atteries an$ *(el cellsTy'es %* ,atteries al8aline ,attery lea$ st%rage,attery nic8elca$mi(m ,attery lithi(m ,attery *(el cell H2 2 *(el cell a''licati%ns.

    UNIT IV ENGINEERING MATERIALS 9A,rasies $e*initi%n? classi*icati%n %r ty'es? grin$ing 9heel? a,rasie 'a'er an$ cl%th.=e*ract%ries $e*initi%n? characteristics? classi*icati%n? 'r%'erties re*ract%riness an$ =>+?$imensi%nal sta,ility? thermal s'alling? thermal e@'ansi%n? '%r%sityF Man(*act(re %* al(mina?magnesite an$ silic%n car,i$e? P%rtlan$ cement man(*act(re an$ 'r%'erties setting an$har$ening %* cement? s'ecial cement 9ater'r%%* an$ 9hite cement'r%'erties an$ (ses. "lass man(*act(re? ty'es? 'r%'erties an$ (ses.

    UNIT V FUELS AND COMBUSTION 9(el Intr%$(cti%n classi*icati%n %* *(els cal%ri*ic al(e higher an$ l%9er cal%ri*ic al(es c%alanalysis %* c%al C'r%@imate an$ (ltimate car,%niBati%n man(*act(re %* metall(rgical c%8e Ctt%H%**mann meth%$ 'etr%le(m man(*act(re %* synthetic 'etr%l C#ergi(s 'r%cess 8n%c8ing%ctane n(m,er $iesel %il cetane n(m,er nat(ral gas c%m'resse$ nat(ral gasC" li(e*ie$'etr%le(m gasesC+P" 'r%$(cer gas 9ater gas. P%9er alc%h%l an$ ,i% $iesel. %m,(sti%n %**(els intr%$(cti%n the%retical calc(lati%n %* cal%ri*ic al(e calc(lati%n %* st%ichi%metry %* *(el an$air rati% igniti%n tem'erat(re e@'l%sie range *l(e gas analysis C=SAT Meth%$.

    TOTAL 4 PERIODS

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    OUTCOMES

    The 8n%9le$ge gaine$ %n engineering materials? *(els? energy s%(rces an$ 9ater

    treatment techni(es 9ill *acilitate ,etter (n$erstan$ing %* engineering 'r%cesses an$a''licati%ns *%r *(rther learning.

    TET BOOS1. ;airam S? alyani P an$ S(,a=amesh.?Engineering hemistryJ.? mareS.S.Engineering hemistryJ? S. han$ D %m'any +t$.? e9 )elhi ? 2010

    REFERENCES1 annan P. an$ =ai8rishnan A.? Engineering hemistryJ? Sri rishna Hitech P(,lishing

    %m'any Pt. +t$. hennai? 200/2. AshimaSriastaa an$ anhai .? %nce'ts %* Engineering hemistryJ? AME

    +earning Priate +imite$.? e9 )elhi.? 2010.3. =en(#a'na an$ =en( "('ta.? Engineering hemistryJ? Macmillan In$ia P(,lisher +t$.?

    2010.4 Pahari A an$ ha(han #.? Engineering hemistryJ.? ire9all Me$ia.? e9 )elhi.? 2010

    GE"22 BASIC ELECTRICAL AND ELECTRONICS ENGINEERING L T P C4 0 0 4

    OB-ECTIVES

    T% e@'lain the ,asic the%rems (se$ in Electrical circ(its an$ the $i**erent c%m'%nents an$*(ncti%n %* electrical machines.

    T% e@'lain the *(n$amentals %* semic%n$(ct%r an$ a''licati%ns.

    T% e@'lain the 'rinci'les %* $igital electr%nics

    T% im'art 8n%9le$ge %* c%mm(nicati%n.

    UNIT I ELECTRICAL CIRCUITS MEASURMENTS 12hmGs +a9 irch%**Gs +a9s Stea$y State S%l(ti%n %* ) irc(its Intr%$(cti%n t% A irc(its

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    UNIT IV DIGITAL ELECTRONICS 12#inary (m,er System +%gic "ates #%%lean Alge,ra Hal* an$ (ll A$$ers li'l%'s =egisters an$ %(nters A) an$ )A %nersi%n Csingle c%nce'ts

    UNIT V FUNDAMENTALS OF COMMUNICATION ENGINEERING 12Ty'es %* Signals Anal%g an$ )igital Signals M%$(lati%n an$ )em%$(lati%n Princi'les %* Am'lit($ean$ re(ency M%$(lati%ns.

    %mm(nicati%n Systems =a$i%? T;? a@? Micr%9ae? Satellite an$ 'tical i,re C#l%c8 )iagramA''r%ach %nly.

    TOTAL "0 PERIODSOUTCOMES

    a,ility t% i$enti*y the electrical c%m'%nents e@'lain the characteristics %* electrical machines.

    a,ility t% i$enti*y electr%nics c%m'%nents an$ (se %* them t% $esign circ(its.

    TET BOOS1. Mittle .? #asic Electrical EngineeringJ? Tata Mc"ra9 Hill E$iti%n? e9 )elhi? 1//0.2. Se$ha =.S.? A''lie$ Electr%nicsJ? S. han$ D %.? 2006.

    REFERENCES

    1. M(th(s(,ramanian =? Saliahanan S an$ M(ralee$haran A? #asic Electrical? Electr%nicsan$ %m'(ter EngineeringJ? Tata Mc"ra9 Hill? Sec%n$ E$iti%n? 2006.

    2. agsar8ar T an$ S(8hi7a M S? #asics %* Electrical EngineeringJ? @*%r$ 'ress 2005.3. Mehta ; ? Princi'les %* Electr%nicsJ? S.han$ D %m'any +t$? 1//4.4. Mahm%%$ ahi an$ %se'h A. E$minister? Electric irc(itsJ? Scha(mG (tline Series?

    Mc"ra9 Hill? 2002.5. Prem8(mar ? #asic Electrical EngineeringJ? An(ra$ha P(,lishers? 2003.

    GE"23 ENGINEERING MECHANICS L T P C

    3 1 0 4OB-ECTIVES

    T% $eel%' ca'acity t% 're$ict the e**ect %* *%rce an$ m%ti%n in the c%(rse %* carrying %(t the$esign *(ncti%ns %* engineering.

    UNIT I BASICS AND STATICS OF PARTICLES 12Intr%$(cti%n >nits an$ )imensi%ns +a9s %* Mechanics +amiGs the%rem? Parallel%gram an$triang(lar +a9 %* *%rces ;ect%rial re'resentati%n %* *%rces ;ect%r %'erati%ns %* *%rces a$$iti%ns?s(,tracti%n? $%t 'r%$(ct? cr%ss 'r%$(ct %'lanar %rces rectang(lar c%m'%nents E(ili,ri(m %*a 'article %rces in s'ace E(ili,ri(m %* a 'article in s'ace E(ialent systems %* *%rces Princi'le %* transmissi,ility .

    UNIT II E>UILIBRIUM OF RIGID BODIES 12ree ,%$y $iagram Ty'es %* s(''%rts Acti%n an$ reacti%n *%rces sta,le e(ili,ri(m M%mentsan$ %('les M%ment %* a *%rce a,%(t a '%int an$ a,%(t an a@is ;ect%rial re'resentati%n %*m%ments an$ c%('les Scalar c%m'%nents %* a m%ment ;arign%nGs the%rem Single e(ialent*%rce E(ili,ri(m %* =igi$ ,%$ies in t9% $imensi%ns E(ili,ri(m %* =igi$ ,%$ies in three $imensi%ns

    UNIT III PROPERTIES OF SURFACES AND SOLIDS 12entr%i$s an$ centre %* mass entr%i$s %* lines an$ areas =ectang(lar? circ(lar? triang(lar areas,y integrati%n T secti%n? I secti%n? Angle secti%n? H%ll%9 secti%n ,y (sing stan$ar$ *%rm(la

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    The%rems %* Pa''(s Area m%ments %* inertia %* 'lane areas =ectang(lar? circ(lar? triang(larareas ,y integrati%n T secti%n? I secti%n? Angle secti%n? H%ll%9 secti%n ,y (sing stan$ar$ *%rm(la Parallel a@is the%rem an$ 'er'en$ic(lar a@is the%rem Princi'al m%ments %* inertia %* 'lane areas Princi'al a@es %* inertiaMass m%ment %* inertia mass m%ment %* inertia *%r 'rismatic? cylin$rical an$s'herical s%li$s *r%m *irst 'rinci'le =elati%n t% area m%ments %* inertia.

    UNIT IV DYNAMICS OF PARTICLES 12

    )is'lacements? ;el%city an$ accelerati%n? their relati%nshi' =elatie m%ti%n (rilinear m%ti%n e9t%nGs la9s %* m%ti%n nits Statics an$

    )ynamicsJ? -th

    E$iti%n? Tata Mc"ra9Hill P(,lishing c%m'any? e9 )elhi C2004.2. ;ela M(rali? Engineering MechanicsJ? @*%r$ >niersity Press C2010

    REFERENCES

    1. Hi,,eller? =. an$ Ash%8 "('ta? Engineering Mechanics Statics an$ )ynamicsJ? 11th

    E$iti%n?Pears%n E$(cati%n 2010.

    2. Iring H. Shames an$ rishna M%hana =a%. ".? Engineering Mechanics Statics an$

    )ynamicsJ? 4th E$iti%n? Pears%n E$(cati%n 2006.3. Meriam .+. an$ raige +.".? Engineering Mechanics Statics ;%l(me 1? )ynamics ;%l(me

    2J? Thir$ E$iti%n? %hn

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    3. )ra9ing %* c(res li8e 'ara,%la? s'iral? in%l(te (sing #s'line %r c(,ic s'line.4. )ra9ing %* *r%nt ie9 an$ t%' ie9 %* sim'le s%li$s li8e 'rism? 'yrami$? cylin$er? c%ne? etc? an$

    $imensi%ning.5. )ra9ing *r%nt ie9? t%' ie9 an$ si$e ie9 %* %,7ects *r%m the gien 'ict%rial ie9s Ceg. ;

    ,l%c8? #ase %* a mi@ie? Sim'le st%%l? ,7ects 9ith h%le an$ c(res.6. )ra9ing %* a 'lan %* resi$ential ,(il$ing C T9% ,e$ r%%ms? 8itchen? hall? etc.&. )ra9ing %* a sim'le steel tr(ss.

    -. )ra9ing secti%nal ie9s %* 'rism? 'yrami$? cylin$er? c%ne? etc?/. )ra9ing is%metric 'r%7ecti%n %* sim'le %,7ects.10. reati%n %* 3) m%$els %* sim'le %,7ects an$ %,taining 2) m(ltiie9 $ra9ings *r%m 3)

    m%$el.%te Pl%tting %* $ra9ings m(st ,e ma$e *%r each e@ercise an$ attache$ t% the rec%r$s 9ritten ,yst($ents.

    OUTCOMES a,ility t% (se the s%*t9are 'ac8ers *%r $ra*ting an$ m%$eling

    a,ility t% create 2) an$ 3) m%$els %* Engineering %m'%nents

    TOTAL 4 PERIODS

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S&.No D'

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    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS1. Traeling micr%sc%'e? meter scale? ni*e e$ge? 9eights

    2. #an$ ga' e@'erimental set ('

    3. #(rette? a'illary t(,e? r(,,er t(,e? st%' cl%c8? ,ea8er an$ 9eighing ,alance

    4. s'ectr%meter? 'rism? s%$i(m a'%(r lam'.

    5. Air9e$ge e@'erimental set ('.

    6. T%rsi%n 'en$(l(m set ('.Cernier ali'er? Scre9 ga(ge? rea$ing lens are re(ire$ *%r m%st %* the e@'eriments

    CHEMISTRY LABORATORY II

    OB-ECTIVES

    T% ma8e the st($ent ac(ire 'ractical s8ills in the 9et chemical an$ instr(mental

    meth%$s *%r (antitatie estimati%n %* har$ness? al8alinity? metal i%n c%ntent? c%rr%si%nin metals an$ cement analysis.

    LIST OF EPERIMENTSA6 FIVE E:'*;'6)

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    MA"31 TRANSFORMS AND PARTIAL DIFFERENTIAL E>UATIONS L T P C3 1 0 4

    OB-ECTIVES

    T% intr%$(ce %(rier series analysis 9hich is central t% many a''licati%ns in engineering a'art

    *r%m its (se in s%ling ,%(n$ary al(e 'r%,lems. T% ac(aint the st($ent 9ith %(rier trans*%rm techni(es (se$ in 9i$e ariety %* sit(ati%ns.

    T% intr%$(ce the e**ectie mathematical t%%ls *%r the s%l(ti%ns %* 'artial $i**erential e(ati%ns

    that m%$el seeral 'hysical 'r%cesses an$ t% $eel%' L trans*%rm techni(es *%r $iscrete timesystems.

    UNIT I PARTIAL DIFFERENTIAL E>UATIONS 9 / 3%rmati%n %* 'artial $i**erential e(ati%ns Sing(lar integrals S%l(ti%ns %* stan$ar$ ty'es %* *irst%r$er 'artial $i**erential e(ati%ns +agrangeGs linear e(ati%n +inear 'artial $i**erential e(ati%ns %*sec%n$ an$ higher %r$er 9ith c%nstant c%e**icients %* ,%th h%m%gene%(s an$ n%nh%m%gene%(sty'es.

    UNIT II FOURIER SERIES 9 / 3)irichletGs c%n$iti%ns "eneral %(rier series $$ an$ een *(ncti%ns Hal* range sine series Hal* range c%sine series %m'le@ *%rm %* %(rier series ParsealGs i$entity Harm%nic analysis.

    UNIT III APPLICATIONS OF PARTIAL DIFFERENTIAL E>UATIONS 9 / 3lassi*icati%n %* P)E Meth%$ %* se'arati%n %* aria,les S%l(ti%ns %* %ne $imensi%nal 9aee(ati%n ne $imensi%nal e(ati%n %* heat c%n$(cti%n Stea$y state s%l(ti%n %* t9% $imensi%nale(ati%n %* heat c%n$(cti%n Ce@cl($ing ins(late$ e$ges.

    UNIT IV FOURIER TRANSFORMS 9 / 3Statement %* %(rier integral the%rem %(rier trans*%rm 'air %(rier sine an$c%sine trans*%rms Pr%'erties Trans*%rms %* sim'le *(ncti%ns %n%l(ti%n the%rem ParsealGsi$entity.

    UNIT V TRANSFORMS AND DIFFERENCE E>UATIONS 9 / 3

    L trans*%rms Elementary 'r%'erties Inerse L trans*%rm C(sing 'artial *racti%n an$ resi$(es %n%l(ti%n the%rem %rmati%n %* $i**erence e(ati%ns S%l(ti%n %* $i**erence e(ati%ns (singL trans*%rm.

    TOTAL L4/T1 "0 PERIODSOUTCOMES

    The (n$erstan$ing %* the mathematical 'rinci'les %n trans*%rms an$ 'artial $i**erential

    e(ati%ns 9%(l$ 'r%i$e them the a,ility t% *%rm(late an$ s%le s%me %* the 'hysical 'r%,lems%* engineering.

    TET BOOS1. ;eerara7an. T.? RTrans*%rms an$ Partial )i**erential E(ati%nsR? Tata Mc"ra9 Hill E$(cati%n

    Pt. +t$.? Sec%n$ re'rint? e9 )elhi? 2012.

    2. "re9al. #.S.? RHigher Engineering MathematicsR, 42n$ E$iti%n? hanna P(,lishers? )elhi?2012.

    3. arayanan.S.? Manicaachag%m Pillay.T. an$ =amanaiah." RA$ance$ Mathematics *%rEngineering St($entsR ;%l. II D III? S.;is9anathan P(,lishers Pt +t$. 1//-.

    REFERENCES

    1. #ali..P an$ Manish "%yal? RA Te@t,%%8 %* Engineering MathematicsR? &th

    E$iti%n? +a@miP(,licati%ns Pt +t$? 200&.

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    2. =amana.#.;.? RHigher Engineering MathematicsR, Tata Mc"ra9 Hill P(,lishing %m'any+imite$? e9 )elhi? 200-.

    3. "lyn ames? RA$ance$ M%$ern Engineering MathematicsR? 3r$

    E$iti%n? Pears%n E$(cati%n?200&.

    4. Er9in reysBig? RA$ance$ Engineering MathematicsR, -th

    E$iti%n? '%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% a''ly mathematical 8n%9le$ge t%

    calc(late the $e*%rmati%n ,ehai%r %* sim'le str(ct(res.

    ritically analyse 'r%,lem an$ s%le the 'r%,lems relate$ t% mechanical elements an$ analyse

    the $e*%rmati%n ,ehai%r *%r $i**erent ty'es %* l%a$s.

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    TET BOOS1. #ansal? =..? RStrength %* MaterialsR? +a@mi P(,licati%ns CP +t$.? 200&2. in$al >..? RStrength %* MaterialsR? Asian #%%8s Pt. +t$.? e9 )elhi? 200&

    REFERENCES1. Eg%r. P.P%'% Engineering Mechanics %* S%li$sJ Prentice Hall %* In$ia? e9 )elhi? 20012. S(,ramanian =.? RStrength %* MaterialsR? @*%r$ >niersity Press? @*%r$ Higher E$(cati%n Series?

    200&.3. Hi,,eler? =..? RMechanics %* MaterialsR? Pears%n E$(cati%n? +%9 Price E$iti%n? 200&4. er$inan$ P. #een? =(ssell %hns%n? .r. an$ %hn . )e9%le RMechanics %* MaterialsR? Tata

    Mc"ra9 Hill P(,lishing c%. +t$.? e9 )elhi? 2005.

    ME"301 ENGINEERING THERMODYNAMICS L T P C3 0 0 3

    OB-ECTIVES

    T% *amiliariBe the st($ents t% (n$erstan$ the *(n$amentals %* therm%$ynamics an$ t% 'er*%rmthermal analysis %n their ,ehai%r an$ 'er*%rmance.

    C>se %* Stan$ar$ an$ a''r%e$ Steam Ta,le? M%llier hart? %m'ressi,ility hart an$Psychr%metric hart 'ermitte$

    UNIT I BASIC CONCEPTS AND FIRST LA$ 9#asic c%nce'ts c%nce't %* c%ntin((m? c%m'aris%n %* micr%sc%'ic an$ macr%sc%'ic a''r%ach. Pathan$ '%int *(ncti%ns. Intensie an$ e@tensie? t%tal an$ s'eci*ic (antities. System an$ their ty'es.Therm%$ynamic E(ili,ri(m State? 'ath an$ 'r%cess. :(asistatic? reersi,le an$ irreersi,le'r%cesses. Heat an$ 9%r8 trans*er? $e*initi%n an$ c%m'aris%n? sign c%nenti%n. )is'lacement 9%r8an$ %ther m%$es %* 9%r8 .P; $iagram. Ler%th la9 %* therm%$ynamics c%nce't %* tem'erat(re an$thermal e(ili,ri(m relati%nshi' ,et9een tem'erat(re scales ne9 tem'erat(re scales. irst la9 %*

    therm%$ynamics a''licati%n t% cl%se$ an$ %'en systems stea$y an$ (nstea$y *l%9 'r%cesses.

    UNIT II SECOND LA$ AND AVAILABILITY ANALYSIS 9Heat =eser%ir? s%(rce an$ sin8. Heat Engine? =e*rigerat%r? Heat '(m'. Statements %* sec%n$ la9an$ its c%r%llaries. arn%t cycle =eerse$ arn%t cycle? Per*%rmance. la(si(s ine(ality. %nce't %*entr%'y? Ts $iagram? T$s E(ati%ns? entr%'y change *%r '(re s(,stance? i$eal gases $i**erent'r%cesses? 'rinci'le %* increase in entr%'y. A''licati%ns %* II +a9. High an$ l%9 gra$e energy.

    Aaila,le an$ n%naaila,le energy %* a s%(rce an$ *inite ,%$y. Energy an$ irreersi,ility. E@'ressi%ns*%r the energy %* a cl%se$ system an$ %'en systems. Energy ,alance an$ entr%'y generati%n.Irreersi,ility. I an$ II la9 E**iciency.

    UNIT III PROPERTIES OF PURE SUBSTANCE AND STEAM PO$ER CYCLE 9%rmati%n %* steam an$ its therm%$ynamic 'r%'erties? '? 'T? T? Ts? hs $iagrams. 'T s(r*ace.

    >se %* Steam Ta,le an$ M%llier hart. )eterminati%n %* $ryness *racti%n. A''licati%n %* I an$ II la9*%r '(re s(,stances. I$eal an$ act(al =an8ine cycles? ycle Im'r%ement Meth%$s =eheat an$=egeneratie cycles? Ec%n%miser? 'reheater? #inary an$ %m,ine$ cycles.

    UNIT IV IDEAL AND REAL GASES, THERMODYNAMIC RELATIONS 9Pr%'erties %* I$eal gas I$eal an$ real gas c%m'aris%n E(ati%ns %* state *%r i$eal an$ real gases=e$(ce$ 'r%'erties.%m'ressi,ility *act%r.Princi'le %* %rres'%n$ing states. "eneralise$%m'ressi,ility hart an$ its (se. Ma@9ell relati%ns? T$s E(ati%ns? )i**erence an$ rati% %* heat

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    ca'acities? Energy e(ati%n? %(leTh%ms%n %e**icient? la(si(s la'eyr%n e(ati%n? Phasehange Pr%cesses. Sim'le alc(lati%ns.

    UNIT V GAS MITURES AND PSYCHROMETRY 9M%le an$ Mass *racti%n? )alt%nGs an$ AmagatGs +a9. Pr%'erties %* gas mi@t(re M%lar mass? gasc%nstant? $ensity? change in internal energy? enthal'y? entr%'y an$ "i,,s *(ncti%n. Psychr%metric'r%'erties? Psychr%metric charts. Pr%'erty calc(lati%ns %* air a'%(r mi@t(res ,y (sing chart an$

    e@'ressi%ns. Psychr%metric 'r%cess a$ia,atic sat(rati%n? sensi,le heating an$ c%%ling?h(mi$i*icati%n? $eh(mi$i*icati%n? ea'%ratie c%%ling an$ a$ia,atic mi@ing. Sim'le A''licati%nsTOTAL 4 PERIODS

    OUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% a''ly the Therm%$ynamic Princi'lest% Mechanical Engineering A''licati%n.

    A''ly mathematical *(n$amentals t% st($y the 'r%'erties %* steam? gas an$ gas mi@t(res.

    TET BOOS 1. ag.P..? Engineering Therm%$ynamicsJ? 4

    thE$iti%n? Tata Mc"ra9Hill? e9 )elhi? 200-.

    2. atara7an E.? REngineering Therm%$ynamics (n$amentals an$ A''licati%nsR? An(ragamP(,licati%ns? 2012.

    REFERENCES 1. engel. ! an$ M.#%les? RTherm%$ynamics An Engineering A''r%achR? &

    thE$iti%n? Tata

    Mc"ra9 Hill? 2010.2. H%lman..P.? RTherm%$ynamicsR? 3

    r$E$iti%n? Mc"ra9Hill? 1//5.

    3. =atha8rishnan. E.? R(n$amentals %* Engineering Therm%$ynamicsR? 2n$

    E$iti%n? PrenticeHall %* In$ia Pt. +t$? 2006

    4. hatt%'a$hyay? P? REngineering Therm%$ynamicsR? @*%r$ >niersity Press? 2010.5. Ar%ra .P? Therm%$ynamicsJ? Tata Mc"ra9Hill? e9 )elhi? 2003.6. ;an nits an$ $imensi%ns Pr%'erties %* *l(i$s mass $ensity? s'eci*ic 9eight? s'eci*ic %l(me? s'eci*icgraity? isc%sity? c%m'ressi,ility? a'%r 'ress(re? s(r*ace tensi%n an$ ca'illarity. l%9 characteristics

    c%nce't %* c%ntr%l %l(me a''licati%n %* c%ntin(ity e(ati%n? energy e(ati%n an$ m%ment(me(ati%n.

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    UNIT II FLO$ THROUGH CIRCULAR CONDUITS #Hy$ra(lic an$ energy gra$ient +aminar *l%9 thr%(gh circ(lar c%n$(its an$ circ(lar ann(li#%(n$arylayer c%nce'ts ty'es %* ,%(n$ary layer thic8ness )arcy

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    UNIT II -OINING PROCESSES 9O')*67 *6(*&',

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    EE"31 ELECTRICAL DRIVES AND CONTROL L T P C3 0 0 3

    OB-ECTIVES

    T% (n$erstan$ the ,asic c%nce'ts %* $i**erent ty'es %* electrical machines an$ their

    'er*%rmance. T% st($y the $i**erent meth%$s %* starting ). m%t%rs an$ in$(cti%n m%t%rs.

    T% st($y the c%nenti%nal an$ s%li$state $ries

    UNIT I INTRODUCTION ##asic Elements Ty'es %* Electric )ries *act%rs in*l(encing the ch%ice %* electrical $ries heating an$ c%%ling c(res +%a$ing c%n$iti%ns an$ classes %* $(ty Selecti%n %* '%9er rating *%r$rie m%t%rs 9ith regar$ t% thermal %erl%a$ing an$ +%a$ ariati%n *act%rs

    UNIT II DRIVE MOTOR CHARACTERISTICS 9Mechanical characteristics S'ee$T%r(e characteristics %* ari%(s ty'es %* l%a$ an$ $rie m%t%rs #ra8ing %* Electrical m%t%rs ) m%t%rs Sh(nt? series an$ c%m'%(n$ single 'hase an$ three'hase in$(cti%n m%t%rs.

    UNIT III STARTING METHODS #

    Ty'es %* ). M%t%r starters Ty'ical c%ntr%l circ(its *%r sh(nt an$ series m%t%rs Three 'hases(irrel cage an$ sli' ring in$(cti%n m%t%rs.

    UNIT IV CONVENTIONAL AND SOLID STATE SPEED CONTROL OF D.C. DRIVES 10S'ee$ c%ntr%l %* ) series an$ sh(nt m%t%rs Armat(re an$ *iel$ c%ntr%l? sing c%ntr%lle$ recti*iers an$ ) ch%''ers a''licati%ns.

    UNIT V CONVENTIONAL AND SOLID STATE SPEED CONTROL OF A.C. DRIVES 10S'ee$ c%ntr%l %* three 'hase in$(cti%n m%t%r ;%ltage c%ntr%l? %ltage *re(ency c%ntr%l? sli' '%9errec%ery scheme >sing inerters an$ A %ltage reg(lat%rs a''licati%ns.

    TOTAL 4 PERIODSOUTCOMES

    >'%n %m'leti%n %* this s(,7ect? the st($ents can a,le t% e@'lain $i**erent ty'es %* electricalmachines an$ their 'er*%rmance

    TET BOOS1. ;e$am S(,rahmaniam? Electric )ries C%nce'ts an$ A''licati%nsJ? Tata Mc"ra9Hill? 20012. agrath .I.. D %thari .).P? Electrical MachinesJ? Tata Mc"ra9Hill? 1//-

    REFERENCES1. Pillai.S. A irst %(rse %n Electric )riesJ?

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    ME"311 MANUFACTURING TECHNOLOGY LABORATORY I L T P C0 0 3 2

    OB-ECTIVES

    T% St($y an$ 'ractice the ari%(s %'erati%ns that can ,e 'er*%rme$ in lathe? sha'er? $rilling?

    milling machines etc. an$ t% e(i' 9ith the 'ractical 8n%9le$ge re(ire$ in the c%re in$(stries.

    LIST OF EPERIMENTS

    Machining an$ Machining time estimati%ns *%r 1. Ta'er T(rning2. E@ternal Threa$ c(tting3. Internal Threa$ (tting4. Eccentric T(rning5. n(rling6. S(are Hea$ Sha'ing&. He@ag%nal Hea$ Sha'ing

    OUTCOMES

    TOTAL 4 PERIODS

    >'%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% $em%nstrate an$ *a,ricate $i**erent

    ty'es %* c%m'%nents (sing the machine t%%ls

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S. NO. NAME OF THE E>UIPMENT >).

    1 entre +athes & %s.

    2 H%riB%ntal Milling Machine 1 %

    3 ;ertical Milling Machine 1 %

    4 Sha'er 1 %s.

    CE"4"1 FLUID MECHANICS AND MACHINERY LABORATORY L T P C0 0 3 2

    OB-ECTIVES

    >'%n %m'leti%n %* this s(,7ect? the st($ents can a,le t% hae han$s %n e@'erience in *l%9

    meas(rements (sing $i**erent $eices an$ als% 'er*%rm calc(lati%n relate$ t% l%sses in 'i'esan$ als% 'er*%rm characteristic st($y %* '(m's? t(r,ines etc.?

    LIST OF EPERIMENTS1. )eterminati%n %* the %e**icient %* $ischarge %* gien ri*ice meter.

    2. )eterminati%n %* the %e**icient %* $ischarge %* gien ;ent(ri meter.

    3. alc(lati%n %* the rate %* *l%9 (sing =%ta meter.

    4. )eterminati%n %* *ricti%n *act%r *%r a gien set %* 'i'es.

    5. %n$(cting e@'eriments an$ $ra9ing the characteristic c(res %* centri*(gal '(m'

    s(,mergi,le '(m'

    6. %n$(cting e@'eriments an$ $ra9ing the characteristic c(res %* reci'r%cating '(m'.

    &. %n$(cting e@'eriments an$ $ra9ing the characteristic c(res %* "ear '(m'.

    -. %n$(cting e@'eriments an$ $ra9ing the characteristic c(res %* Pelt%n 9heel.

    /. %n$(cting e@'eriments an$ $ra9ing the characteristics c(res %* rancis t(r,ine.

    10. %n$(cting e@'eriments an$ $ra9ing the characteristic c(res %* a'lan t(r,ine.

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    TOTAL 4 PERIODS

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    OUTCOMES

    A,ility t% (se the meas(rement e(i'ments *%r *l%9 meas(rement

    A,ility t% $% 'er*%rmance tr(st %n $i**erent *l(i$ machinery

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S. NO. NAME OF THE E>UIPMENT >).

    1 ri*ice meter set(' 1

    2 ;ent(ri meter set(' 1

    3 =%tameter set(' 1

    4 Pi'e l%9 analysis set(' 1

    5 entri*(gal '(m's(,mergi,le '(m' set(' 1

    6 =eci'r%cating '(m' set(' 1

    & "ear '(m' set(' 1

    - Pelt%n 9heel set(' 1

    / rancis t(r,ine set(' 1

    10 a'lan t(r,ine set(' 1

    EE"3" ELECTRICAL ENGINEERING LABORATORY L T P C0 0 3 2

    OB-ECTIVESQ T% ali$ate the 'rinci'les st($ie$ in the%ry ,y 'er*%rming e@'eriments in the la,%rat%ry

    LIST OF EPERIMENTS1. +%a$ test %n ) Sh(nt D ) Series m%t%r

    2. .. D +%a$ characteristics %* ) Sh(nt an$ ) Series generat%r3. S'ee$ c%ntr%l %* ) sh(nt m%t%r CArmat(re? iel$ c%ntr%l4. +%a$ test %n single 'hase trans*%rmer5. . D S. Test %n a single 'hase trans*%rmer6. =eg(lati%n %* an alternat%r ,y EM D MM meth%$s.&. ; c(res an$ inerte$ ; c(res %* synchr%n%(s M%t%r-. +%a$ test %n three 'hase s(irrel cage In$(cti%n m%t%r/. S'ee$ c%ntr%l %* three 'hase sli' ring In$(cti%n M%t%r10. +%a$ test %n single 'hase In$(cti%n M%t%r.11. St($y %* ) D A Starters

    OUTCOMES

    A,ility t% 'er*%rm s'ee$ characteristic %* $i**erent electrical machine

    TOTAL 4 PERIODS

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S.No. NAME OF THE E>UIPMENT >).

    1 ) Sh(nt m%t%r 22 ) Series m%t%r 1

    3 ) sh(nt m%t%r) Sh(nt "enerat%r set 1

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    4 ) Sh(nt m%t%r) Series "enerat%r set 15 Single 'hase trans*%rmer 2

    6 Three 'hase alternat%r 2& Three 'hase synchr%n%(s m%t%r 1

    - Three 'hase S(irrel cage In$(cti%n m%t%r 1

    / Three 'hase Sli' ring In$(cti%n m%t%r 1

    10 Single 'hase In$(cti%n m%t%r 1

    MA"42 STATISTICS AND NUMERICAL METHODS L T P C3 1 0 4

    OB-ECTIVES

    This c%(rse aims at 'r%i$ing the necessary ,asic c%nce'ts %* a *e9 statistical an$ n(merical

    meth%$s an$ gie 'r%ce$(res *%r s%ling n(merically $i**erent 8in$s %* 'r%,lems %cc(rring inengineering an$ techn%l%gy.

    UNIT I TESTING OF HYPOTHESIS 9/3

    +arge sam'le test ,ase$ %n %rmal $istri,(ti%n *%r single mean an$ $i**erence %* means Tests

    ,ase$ %n t? 2

    an$ $istri,(ti%ns *%r testing means an$ ariances %ntingency ta,le CTest *%r

    In$e'en$ency "%%$ness %* *it.

    UNIT II DESIGN OF EPERIMENTS 9/3ne 9ay an$ t9% 9ay classi*icati%ns %m'letely ran$%miBe$ $esign =an$%miBe$ ,l%c8 $esign +atin s(are $esign 2

    2*act%rial $esign.

    UNIT III SOLUTION OF E>UATIONS AND EIGENVALUE PROBLEMS 9/3e9t%n =a'hs%n meth%$ "a(ss eliminati%n meth%$ 'i%ting "a(ss %r$an meth%$s Iteratiemeth%$s %* "a(ss ac%,i an$ "a(ss Sei$el Matri@ inersi%n ,y "a(ss %r$an meth%$ Eigen

    al(es %* a matri@ ,y '%9er meth%$.

    UNIT IV INTERPOLATION, NUMERICAL DIFFERENTIATION AND NUMERICALINTEGRATION

    9/3+agrangeGs an$ e9t%nGs $ii$e$ $i**erence inter'%lati%ns e9t%nGs *%r9ar$ an$ ,ac89ar$$i**erence inter'%lati%n A''r%@imati%n %* $eriates (sing inter'%lati%n '%lyn%mials (mericalsingle an$ $%(,le integrati%ns (sing Tra'eB%i$al an$ Sim's%nGs 13 r(les.

    UNIT V NUMERICAL SOLUTION OF ORDINARY DIFFERENTIAL E>UATIONS 9/3Tayl%rGs series meth%$ E(lerGs meth%$ M%$i*ie$ E(lerGs meth%$ %(rth %r$er =(nge(tta

    meth%$ *%r s%ling *irst %r$er e(ati%ns MilneGs 're$ict%r c%rrect%r meth%$s *%r s%ling *irst %r$ere(ati%ns inite $i**erence meth%$s *%r s%ling sec%n$ %r$er e(ati%ns.TOTAL L4/T1 "0 PERIODS

    OUTCOMES

    It hel's the st($ents t% hae a clear 'erce'ti%n %* the '%9er %* statistical an$ n(merical

    techni(es? i$eas an$ 9%(l$ ,e a,le t% $em%nstrate the a''licati%ns %* these techni(es t%'r%,lems $ra9n *r%m in$(stry? management an$ %ther engineering *iel$s.

    TET BOOS

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    1. %hns%n. =.A.? an$ "('ta. .#.? RMiller an$ re(n$Gs Pr%,a,ility an$ Statistics *%r EngineersR?11

    thE$iti%n? Pears%n E$(cati%n? ? Asia? 2011.

    2. "re9al. #.S.? an$ "re9al. .S.? R(merical Meth%$s in Engineering an$ ScienceR? /th

    E$iti%n?hanna P(,lishers? e9 )elhi? 200&.

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    REFERENCES1. niersal %int r%c8er mechanisms.

    UNIT II INEMATICS OF LINAGE MECHANISMS 9)is'lacement? el%city an$ accelerati%n analysis %* sim'le mechanisms "ra'hical meth%$ ;el%cityan$ accelerati%n '%lyg%ns ;el%city analysis (sing instantane%(s centres 8inematic analysis %*sim'le mechanisms %inci$ent '%ints %ri%lis c%m'%nent %* Accelerati%n Intr%$(cti%n t% lin8agesynthesis 'r%,lem.

    UNIT III INEMATICS OF CAM MECHANISMS 9lassi*icati%n %* cams an$ *%ll%9ers Termin%l%gy an$ $e*initi%ns )is'lacement $iagrams >ni*%rmel%city? 'ara,%lic? sim'le harm%nic an$ cycl%i$al m%ti%ns )eriaties %* *%ll%9er m%ti%ns +ay%(t%* 'late cam 'r%*iles S'eci*ie$ c%nt%(r cams irc(lar arc an$ tangent cams Press(re angle an$(n$erc(tting siBing %* cams.

    UNIT IV GEARS AND GEAR TRAINS 9+a9 %* t%%the$ gearing In%l(tes an$ cycl%i$al t%%th 'r%*iles S'(r "ear termin%l%gy an$ $e*initi%ns

    "ear t%%th acti%n c%ntact rati% Inter*erence an$ (n$erc(tting. Helical? #eel?

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    UNIT V FRICTION IN MACHINE ELEMENTS 9S(r*ace c%ntacts Sli$ing an$ =%lling *ricti%n ricti%n $ries ricti%n in scre9 threa$s #earingsan$ l(,ricati%n ricti%n cl(tches #elt an$ r%'e $ries ricti%n in ,ra8es #an$ an$ #l%c8 ,ra8es.

    TOTAL 4 PERIODSOUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% a''ly *(n$amentals %* mechanism *%r

    the $esign %* ne9 mechanisms an$ analyse them *%r %'tim(m $esign.

    TET BOOS

    1. >ic8er? ..? Penn%c8 ".= an$ Shigley? .E.? The%ry %* Machines an$ MechanismsJ? 3r$

    E$iti%n? @*%r$ >niersity Press? 200/.2. =attan? S.S? The%ry %* MachinesJ? 3

    r$E$iti%n? Tata Mc"ra9Hill? 200/.

    REFERENCES1. Th%mas #ean? RThe%ry %* MachinesR? 3r$ E$iti%n? #S P(,lishers an$ )istri,(t%rs? 2005.2. legh%rn. niersity Press? 20053. =%,ert +. %rt%n? Rinematics an$ )ynamics %* MachineryR? Tata Mc"ra9Hill? 200/.4. Allen S. Hall r.? inematics an$ +in8age )esignJ? Prentice Hall? 1/615. "h%sh. A an$ Mallic8? A..? The%ry %* Mechanisms an$ MachinesR? A**iliate$ East

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    UNIT III SHAPER, MILLING AND GEAR CUTTING MACHINES 9Sha'er Ty'es %* %'erati%ns. )rilling ?reaming? ,%ring? Ta''ing. Milling %'erati%nsty'es %* millingc(tter. "ear c(tting *%rming an$ generati%n 'rinci'le an$ c%nstr(cti%n %* gear milling ?h%,,ing an$gear sha'ing 'r%cesses *inishing %* gears.

    UNIT IV ABRASIVE PROCESS AND BROACHING 9A,rasie 'r%cesses grin$ing 9heel s'eci*icati%ns an$ selecti%n? ty'es %* grin$ing 'r%cess

    cylin$rical grin$ing? s(r*ace grin$ing? centreless grin$ing an$ internal grin$ing Ty'ical a''licati%ns c%nce'ts %* s(r*ace integrity? ,r%aching machines ,r%ach c%nstr(cti%n '(sh? '(ll? s(r*ace an$c%ntin(%(s ,r%aching machines

    UNIT V CNC MACHINING 9(merical %ntr%l C machine t%%ls ty'es? c%nstr(cti%nal $etails? s'ecial *eat(res?machining centre? 'art 'r%gramming *(n$amentals man(al 'art 'r%gramming micr%machining 9a*er machining

    TOTAL 4 PERIODSOUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% (n$erstan$ an$ c%m'are the

    *(ncti%ns an$ a''licati%ns %* $i**erent metal c(tting t%%ls an$ als% $em%nstrate the

    'r%gramming in machining.

    TET BOOS1. Ha7ra h%($h(ry? RElements %*

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    $iagram = Har$ena,ility? %miny en$ (ench test A(stem'ering? martem'ering casehar$ening? car,(riBing? itri$ing? cyani$ing? car,%nitri$ing lame an$ In$(cti%n har$ening ;ac((man$ Plasma har$ening. .

    UNIT III FERROUS AND NONFERROUS METALS 9E**ect %* all%ying a$$iti%ns %n steel U an$ V sta,ilisers stainless an$ t%%l steels HS+A? Maragingsteels ast Ir%n "rey? 9hite? mallea,le? s'her%i$al all%y cast ir%ns? %''er an$ c%''er all%ys

    #rass? #r%nBe an$ ('r%nic8el Al(mini(m an$ Al( 'reci'itati%n strengthening treatment #earing all%ys? Mgall%ys? i,ase$ s('er all%ys an$ Titani(m all%ys.

    UNIT IV NONMETALLIC MATERIALS 9P%lymers ty'es %* '%lymer? c%mm%$ity an$ engineering '%lymers Pr%'erties an$ a''licati%ns %*ari%(s therm%setting an$ therm%'lastic '%lymers CPP? PS? P;? PMMA? PET?P? PA? A#S? PI? PAI?PP? PPS? PEE? PTE? P%lymers >rea an$ Phen%l *%rmal$ehy$es Engineering eramics Pr%'erties an$ a''licati%ns %* Al23? Si? Si34? PSL an$ SIA+ %m'%siteslassi*icati%ns MetalMatri@ an$ =P A''licati%ns %* %m'%sites.

    UNIT V MECHANICAL PROPERTIES AND DEFORMATION MECHANISMS #Mechanisms %* 'lastic $e*%rmati%n? sli' an$ t9inning Ty'es %* *ract(re Testing %* materials (n$er

    tensi%n? c%m'ressi%n an$ shear l%a$s Har$ness tests C#rinell? ;ic8ers an$ =%c89ell? har$nesstests? Im'act test lB%$ an$ char'y? *atig(e an$ cree' *ail(re mechanisms.TOTAL 4 PERIODS

    OUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% a''ly the $i**erent materials? their

    'r%cessing? heat treatments in s(ita,le a''licati%n in mechanical engineering *iel$s.

    TET BOOS1. Aner?? S.H.? Intr%$(cti%n t% Physical Metall(rgyJ? Mc"ra9 Hill #%%8 %m'any?1//4.2. 'a$hyay? Materials Science an$ EngineeringJ? ;ia #%%8s Pt.

    +t$.? e9 )elhi? 2006.4. >..in$al Material Science an$ Metall(rgy? REngineering Materials an$ Mettal(rgyR? irst

    E$iti%n? )%rling in$ersley? 2012

    GE"31 ENVIRONMENTAL SCIENCE AND ENGINEERING L T P C3 0 0 3OB-ECTIVEST% the st($y %* nat(re an$ the *acts a,%(t enir%nment.

    T% *in$ing an$ im'lementing scienti*ic? techn%l%gical? ec%n%mic an$ '%litical s%l(ti%ns t%

    enir%nmental 'r%,lems. T% st($y the interrelati%nshi' ,et9een liing %rganism an$ enir%nment.

    T% a''reciate the im'%rtance %* enir%nment ,y assessing its im'act %n the h(man 9%rl$F

    enisi%n the s(rr%(n$ing enir%nment? its *(ncti%ns an$ its al(e.

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    T% st($y the $ynamic 'r%cesses an$ (n$erstan$ the *eat(res %* the earthGs interi%r an$

    s(r*ace.

    T% st($y the integrate$ themes an$ ,i%$iersity? nat(ral res%(rces? '%ll(ti%n c%ntr%l an$ 9aste

    management.

    UNIT I ENVIRONMENT, ECOSYSTEMS AND BIODIVERSITY 12)e*initi%n? sc%'e an$ im'%rtance %* =is8 an$ haBar$sF hemical haBar$s? Physical haBar$s?

    #i%l%gical haBar$s in the enir%nment c%nce't %* an ec%system str(ct(re an$ *(ncti%n %* anec%system 'r%$(cers? c%ns(mers an$ $ec%m'%sers@ygen cycle an$ itr%gen cycle energy *l%9in the ec%system ec%l%gical s(ccessi%n 'r%cesses Intr%$(cti%n? ty'es? characteristic *eat(res?str(ct(re an$ *(ncti%n %* the Ca *%rest ec%system C, grasslan$ ec%system Cc $esert ec%system C$a(atic ec%systems C'%n$s? streams? la8es? riers? %ceans? est(aries Intr%$(cti%n t% ,i%$iersity$e*initi%n genetic? s'ecies an$ ec%system $iersity ,i%ge%gra'hical classi*icati%n %* In$ia al(e %*,i%$iersity c%ns(m'tie (se? 'r%$(ctie (se? s%cial? ethical? aesthetic an$ %'ti%n al(es #i%$iersity at gl%,al? nati%nal an$ l%cal leels In$ia as a mega$iersity nati%n h%ts'%ts %*,i%$iersity threats t% ,i%$iersity ha,itat l%ss? '%aching %* 9il$li*e? man9il$li*e c%n*licts en$angere$ an$ en$emic s'ecies %* In$ia c%nserati%n %* ,i%$iersity Insit( an$ e@sit(c%nserati%n %* ,i%$iersity. iel$ st($y %* c%mm%n 'lants? insects? ,ir$s iel$ st($y %* sim'leec%systems '%n$? rier? hill sl%'es? etc.

    UNIT II ENVIRONMENTAL POLLUTION 10)e*initi%n ca(ses? e**ects an$ c%ntr%l meas(res %* Ca Air '%ll(ti%n CAtm%s'heric chemistryhemical c%m'%siti%n %* the atm%s'hereF hemical an$ 'h%t%chemical reacti%ns in the atm%s'here *%rmati%n %* sm%g? PA? aci$ rain? %@ygen an$ %B%ne chemistryF Mitigati%n 'r%ce$(res %ntr%l %*'artic(late an$ gase%(s emissi%n? %ntr%l %* S2? W? an$ H C, se an$ %ere@'l%itati%n? $e*%restati%n? case st($ies tim,er e@tracti%n? mining?$ams an$ their e**ects %n *%rests an$ tri,al 'e%'le se an$ %er(tiliBati%n %*s(r*ace an$ gr%(n$ 9ater? $ams,ene*its an$ 'r%,lems Mineral res%(rces >se an$ e@'l%itati%n?enir%nmental e**ects %* e@tracting an$ (sing mineral res%(rces? case st($ies %%$ res%(rces

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    acci$ents an$ h%l%ca(st? case st($ies. 9astelan$ reclamati%n c%ns(merism an$ 9aste 'r%$(cts enir%nment 'r%$(cti%n act Air act

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    UNIT II INTERNAL COMBUSTION ENGINES 10lassi*icati%n %m'%nents an$ their *(ncti%n. ;ale timing $iagram an$ '%rt timing $iagram act(alan$ the%retical '; $iagram %* *%(r str%8e an$ t9% str%8e engines. Sim'le an$ c%m'lete ar,(rett%r.MPI? )iesel '(m' an$ in7ect%r system. #attery an$ Magnet% Igniti%n System Princi'les %*%m,(sti%n an$ 8n%c8ing in SI an$ I Engines. +(,ricati%n an$ %%ling systems. Per*%rmancecalc(lati%n.

    UNIT III STEAM NOLES AND TURBINES 9l%9 %* steam thr%(gh n%BBles? sha'es %* n%BBles? e**ect %* *ricti%n? critical 'ress(re rati%?s('ersat(rate$ *l%9. Im'(lse an$ =eacti%n 'rinci'les? c%m'%(n$ing? el%city $iagram *%r sim'le an$m(ltistage t(r,ines? s'ee$ reg(lati%ns "%ern%rs.

    UNIT IV AIR COMPRESSOR 9lassi*icati%n an$ 9%r8ing 'rinci'le %* ari%(s ty'es %* c%m'ress%rs? 9%r8 %* c%m'ressi%n 9ith an$9ith%(t clearance? ;%l(metric e**iciency? Is%thermal e**iciency an$ Isentr%'ic e**iciency %* reci'r%catingc%m'ress%rs? M(ltistage air c%m'ress%r an$ inter c%%ling 9%r8 %* m(ltistage air c%m'ress%r

    UNIT V REFRIGERATION AND AIR CONDITIONING 9=e*rigerants ;a'%(r c%m'ressi%n re*rigerati%n cycle s('er heat? s(, c%%ling Per*%rmance

    calc(lati%ns 9%r8ing 'rinci'le %* a'%(r a,s%r'ti%n system? Amm%nia

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    5. "ear generati%n in gear sha'ing machine6. Plain S(r*ace grin$ing&. ylin$rical grin$ing-. T%%l angle grin$ing 9ith t%%l an$ (tter "rin$er/. Meas(rement %* c(tting *%rces in Milling T(rning Pr%cess10. Part Pr%gramming.

    OUTCOMES A,ility t% (se $i**erent machine t%%ls t% man(*act(ring gears.

    A,ility t% (se $i**erent machine t%%ls *%r *inishing %'erati%ns

    A,ility t% man(*act(re t%%ls (sing c(tter grin$er

    )eel%' 'art 'r%gramming

    TOTAL 4 PERIODS

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S.No. NAME OF THE E>UIPMENT >).

    1 T(rret an$ a'stan +athes 1 % each

    2 H%riB%ntal Milling Machine 2 %

    3 ;ertical Milling Machine 1 %4 S(r*ace "rin$ing Machine 1 %.5 ylin$erical "rin$ing Machine 1 %.

    6 =a$ial )rilling Machine 1 %.& lathe T%%l )ynam%meter 1 %

    - Milling T%%l )ynam%meter 1 %

    / "ear H%,,ing Machine 1 %10 T%%l Ma8ers Micr%sc%'e 1 %

    11 +athe 1 %12 Milling machine 1 %

    13 "ear Sha'ing machine 1 %

    14 enterless grin$ing machine 1 %

    15 T%%l an$ c(tter grin$er 1 %

    ME"412 THERMAL ENGINEERING LABORATORY I L T P C0 0 3 2

    OB-ECTIVES T% st($y the al(e timing; $iagram an$ 'er*%rmance %* I Engines

    T% St($y the characteristics %* *(els+(,ricates (se$ in I Engines T% st($y the Per*%rmance %* steam generat%r t(r,ine

    LIST OF EPERIMENTSI.C. ENGINE LAB 301. ;ale Timing an$ P%rt Timing $iagrams.2. Act(al ' $iagrams %* I engines.3. Per*%rmance Test %n 4 str%8e )iesel Engine.4. Heat #alance Test %n 4 str%8e )iesel Engine.

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    5. M%rse Test %n M(lticylin$er Petr%l Engine.&. =etar$ati%n Test %n a )iesel Engine.-. )eterminati%n %* lash P%int an$ ire P%int %* ari%(s *(els l(,ricants.

    STEAM LAB 11. St($y %n Steam "enerat%rs an$ T(r,ines.2. Per*%rmance an$ Energy #alance Test %n a Steam "enerat%r.

    3. Per*%rmance an$ Energy #alance Test %n Steam T(r,ine.TOTAL 4 PERIODS

    OUTCOMES

    A,ility t% c%n$(ct e@'eriment %n I engine t% st($y the characteristic an$ 'er*%rmance %* I

    $esign steam t(r,ines.

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S.No. NAME OF THE E>UIPMENT >).

    1 I. Engine 2 str%8e an$ 4 str%8e m%$el 1 set

    2 A''arat(s *%r lash an$ ire P%int 1 %.

    3 4str%8e )iesel Engine 9ith mechanical l%a$ing. 1 %

    4 4str%8e )iesel Engine 9ith hy$ra(lic l%a$ing. 1 %.

    5 4str%8e )iesel Engine 9ith electrical l%a$ing. 1 %.

    6 M(lticylin$er Petr%l Engine 1 %.

    & Single cylin$er Petr%l Engine 1 %.

    - )ata Ac(isiti%n system 9ith any %ne %* the a,%e engines 1 %.

    / Steam #%iler 9ith t(r,ine set(' 1 %.

    CE"31 STRENGTH OF MATERIALS LABORATORY L T P C0 0 3 2

    OB-ECTIVES

    T% s(''lement the the%retical 8n%9le$ge gaine$ in Mechanics %* S%li$s 9ith 'ractical testing *%r$etermining the strength %* materials (n$er e@ternally a''lie$ l%a$s. This 9%(l$ ena,le the st($ent t%hae a clear (n$erstan$ing %* the $esign *%r strength an$ sti**ness

    LIST OF EPERIMENTS1. Tensi%n test %n a mil$ steel r%$2. )%(,le shear test %n Mil$ steel an$ Al(mini(m r%$s3. T%rsi%n test %n mil$ steel r%$4. Im'act test %n metal s'ecimen5. Har$ness test %n metals #rinnell an$ =%c89ell Har$ness (m,er6. )e*lecti%n test %n ,eams&. %m'ressi%n test %n helical s'rings-. Strain Meas(rement (sing =%sette strain ga(ge

    /. E**ect %* har$ening Im'r%ement in har$ness an$ im'act resistance %* steels.10. Tem'ering Im'r%ement Mechanical 'r%'erties %m'aris%n

    Ci >nhar$ene$ s'ecimenCii:(enche$ S'ecimen an$Ciii :(enche$ an$ tem'ere$ s'ecimen.11. Micr%sc%'ic E@aminati%n %*

    Ci Har$ene$ sam'les an$CiiHar$ene$ an$ tem'ere$ sam'les.

    TOTAL 4 PERIODS

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    OUTCOMES

    A,ility t% 'er*%rm $i**erent $estr(ctie testing

    A,ility t% characteristic materials

    LIST OF E>UIPMENT FOR BATCH OF 30 STUDENTS

    S.No. NAME OF THE E>UIPMENT >).

    1 >niersal Tensile Testing machine 9ith $%(,le 1 shear attachment 40 T%n a'acity

    1

    2 T%rsi%n Testing Machine C60 M a'acity 13 Im'act Testing Machine C300 a'acity 1

    4 #rinell Har$ness Testing Machine 1

    5 =%c89ell Har$ness Testing Machine 1

    6 S'ring Testing Machine *%r tensile an$ c%m'ressie l%a$s C2500 1

    & Metall(rgical Micr%sc%'es 3

    - M(**le (rnace C-00 1

    ME"01 COMPUTER AIDED DESIGN L T P C3 0 0 3

    OB-ECTIVESQ T% 'r%i$e an %erie9 %* h%9 c%m'(ters are ,eing (se$ in mechanical c%m'%nent $esign

    UNIT I FUNDAMENTALS OF COMPUTER GRAPHICS 9Pr%$(ct cycle )esign 'r%cess se(ential an$ c%nc(rrent engineering %m'(ter ai$e$ $esign A) system architect(re %m'(ter gra'hics c%%r$inate systems 2) an$ 3) trans*%rmati%nsh%m%gene%(s c%%r$inates +ine $ra9ing li''ing ie9ing trans*%rmati%n

    UNIT II GEOMETRIC MODELING 9=e'resentati%n %* c(res Hermite c(re #eBier c(re #s'line c(resrati%nal c(resTechni(es*%r s(r*ace m%$eling s(r*ace 'atch %%ns an$ ,ic(,ic 'atches #eBier an$ #s'line s(r*aces. S%li$m%$eling techni(es S" an$ #re'

    UNIT III VISUAL REALISM 9Hi$$en +ineS(r*aceS%li$ rem%al alg%rithms sha$ing c%l%(ring c%m'(ter animati%n.

    UNIT IV ASSEMBLY OF PARTS 9Assem,ly m%$elling inter*erences %* '%siti%ns an$ %rientati%n t%lerance analysismass'r%'ertycalc(lati%ns mechanism sim(lati%n an$ inter*erence chec8ing.

    UNIT V CAD STANDARDS 9Stan$ar$s *%r c%m'(ter gra'hics G?*(& '6'& S

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    TET BOOS1. I,rahim Lei$ Mastering A) AMJ Tata Mc"ra9Hill P(,lishing %.200&

    REFERENCES1. hris McMah%n an$ immie #r%9ne A)AM Princi'lesR? RPractice an$ Man(*act(ring

    management Sec%n$ E$iti%n? Pears%n E$(cati%n? 1///.2. '%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% (n$erstan$ an$ a''ly $i**erent heatan$ mass trans*er 'rinci'les %* $i**erent a''licati%ns.

    TET BOO1. !(n(s A. engel? RHeat Trans*er A Practical A''r%achR? Tata Mc"ra9 Hill? 2010

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    REFERENCE BOOS1. ran8 P. Incr%'era an$ )ai$ P. )e9itt? R(n$amentals %* Heat an$ Mass Trans*erR? %hn

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    OUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% s(ccess*(lly $esign machine

    c%m'%nents

    TET BOO1. #han$ari ;? )esign %* Machine ElementsJ? 3

    r$E$iti%n? Tata Mc"ra9Hill #%%8 %? 2010.

    2. %se'h Shigley? harles Misch8e? =ichar$ #($ynas an$ eith is,ett Mechanical

    Engineering )esignJ? -th E$iti%n? Tata Mc"ra9Hill? 200-.

    REFERENCES1. S(n$arara7am%%rthy T. ;. Shanm(gam .? Machine )esignJ? An(ra$ha P(,licati%ns?

    hennai? 2003.2. =%,ert . (inall an$ (rt M. Marshe8? (n$amentals %* Machine )esignJ? 4

    thE$iti%n?

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    UNIT IV FORM MEASUREMENT 10Princi'les an$ Meth%$s %* straightness latness meas(rement Threa$ meas(rement? gearmeas(rement? s(r*ace *inish meas(rement? =%(n$ness meas(rement A''licati%ns.

    UNIT V MEASUREMENT OF PO$ER, FLO$ AND TEMPERATURE #%rce? t%r(e? '%9er mechanical ? Pne(matic? Hy$ra(lic an$ Electrical ty'e. l%9 meas(rement;ent(rimeter? ri*ice meter? r%tameter? 'it%t t(,e Tem'erat(re ,imetallic stri'? therm%c%('les?

    electrical resistance therm%meter =elia,ility an$ ali,rati%n =ea$a,ility an$ =elia,ility.TOTAL 4 PERIODS

    OUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the St($ents can $em%nstrate $i**erent meas(rement

    techn%l%gies an$ (se %* them in In$(strial %m'%nents

    TET BOOS1. ain =.. Engineering Metr%l%gyJ? hanna P(,lishers? 2005.2. "('ta. I..? Engineering Metr%l%gyJ? )han'atrai P(,licati%ns? 2005.

    REFERENCES

    1. harles =eginal$ Sh%t,%lt? Metr%l%gy *%r EngineersJ? 5th

    e$iti%n? engage +earning

    EMEA?1//0.2. #ac89ith? Marang%ni? +ienhar$? Mechanical Meas(rementsJ? Pears%n E$(cati%n ? 2006.

    ME"0 DYNAMICS OF MACHINES L T P C3 0 0 3

    OB-ECTIVES

    T% (n$erstan$ the *%rcem%ti%n relati%nshi' in c%m'%nents s(,7ecte$ t% e@ternal *%rces an$analysis %* stan$ar$ mechanisms.

    T% (n$erstan$ the (n$esira,le e**ects %* (n,alances res(lting *r%m 'rescri,e$ m%ti%ns in

    mechanism. T% (n$erstan$ the e**ect %* )ynamics %* (n$esira,le i,rati%ns.

    T% (n$erstan$ the 'rinci'les in mechanisms (se$ *%r s'ee$ c%ntr%l an$ sta,ility c%ntr%l.

    UNIT I FORCE ANALYSIS 9)ynamic *%rce analysis Inertia *%rce an$ Inertia t%r(e ) Alem,ertGs 'rinci'le )ynamic Analysis inreci'r%cating engines "as *%rces Inertia e**ect %* c%nnecting r%$ #earing l%a$s ran8 sha*tt%r(e T(rning m%ment $iagrams ly

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    UNIT IV FORCED VIBRATION 9=es'%nse %* %ne $egree *ree$%m systems t% 'eri%$ic *%rcing Harm%nic $ist(r,ances )ist(r,anceca(se$ ,y (n,alance S(''%rt m%ti%n transmissi,ility ;i,rati%n is%lati%n i,rati%n meas(rement.

    UNIT V MECHANISM FOR CONTROL 9"%ern%rs Ty'es entri*(gal g%ern%rs "raity c%ntr%lle$ an$ s'ring c%ntr%lle$ centri*(galg%ern%rs haracteristics E**ect %* *ricti%n %ntr%lling *%rce c(res. "yr%sc%'es "yr%sc%'ic

    *%rces an$ t%r(es "yr%sc%'ic sta,iliBati%n "yr%sc%'ic e**ects in A(t%m%,iles? shi's an$air'lanes.

    TOTAL 4 PERIODSOUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the St($ents can a,le t% 're$ict the *%rce analysis in

    mechanical system an$ relate$ i,rati%n iss(es an$ can a,le t% s%le the 'r%,lem

    TET BOO

    1. >ic8er? ..? Penn%c8 ".= an$ Shigley? .E.? The%ry %* Machines an$ MechanismsJ ?3r$

    E$iti%n? @*%r$ >niersity Press? 200/.2. =attan? S.S? The%ry %* MachinesJ? 3

    r$E$iti%n? Tata Mc"ra9Hill? 200/

    REFERENCES1. Th%mas #ean? RThe%ry %* MachinesR? 3r$ E$iti%n? #S P(,lishers an$ )istri,(t%rs? 2005.2. legh%rn. niersity Press? 20053. #ens%n H. T%ng(e? JPrinci'les %* ;i,rati%nsJ? @*%r$ >niersity Press? 2

    n$E$iti%n? 200&

    4. =%,ert +. %rt%n? Rinematics an$ )ynamics %* MachineryR? Tata Mc"ra9Hill? 200/.5. Allen S. Hall r.? inematics an$ +in8age )esignJ? Prentice Hall? 1/616. "h%sh. A an$ Mallic8? A..? The%ry %* Mechanisms an$ MachinesR? A**iliate$ East

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    UNIT II ENGINEERING ETHICS 9Senses %* Engineering EthicsG ;ariety %* m%ral iss(es Ty'es %* in(iry M%ral $ilemmas M%ral

    A(t%n%my %hl,ergGs the%ry "illiganGs the%ry %nsens(s an$ %ntr%ersy M%$els %*'r%*essi%nal r%les The%ries a,%(t right acti%n Sel*interest (st%ms an$ =eligi%n >ses %*Ethical The%ries

    UNIT III ENGINEERING AS SOCIAL EPERIMENTATION 9

    Engineering as E@'erimentati%n Engineers as res'%nsi,le E@'erimenters %$es %* Ethics A #alance$ (tl%%8 %n +a9.

    UNIT IV SAFETY, RESPONSIBILITIES AND RIGHTS 9Sa*ety an$ =is8 Assessment %* Sa*ety an$ =is8 =is8 #ene*it Analysis an$ =e$(cing =is8 =es'ect *%r A(th%rity %llectie #argaining %n*i$entiality %n*licts %* Interest cc('ati%nalrime Pr%*essi%nal =ights Em'l%yee =ights Intellect(al Pr%'erty =ights CIP= )iscriminati%n

    UNIT V GLOBAL ISSUES #M(ltinati%nal %r'%rati%ns Enir%nmental Ethics %m'(ter Ethics '%n c%m'leti%n %* the c%(rse? the st($ent sh%(l$ ,e a,le t% a''ly ethics in s%ciety? $isc(ss

    the ethical iss(es relate$ t% engineering an$ realiBe the res'%nsi,ilities an$ rights in thes%ciety

    TETBOOS1. Mi8e

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    ME"11 DYNAMICS LABORATORY L T P C0 0 3 2

    OB-ECTIVESQ T% s(''lement the 'rinci'les learnt in 8inematics an$ )ynamics %* Machinery.Q T% (n$erstan$ h%9 certain meas(ring $eices are (se$ *%r $ynamic testing.

    LIST OF EPERIMENTS

    1. a St($y %* gear 'arameters., E@'erimental st($y %* el%city rati%s %* sim'le? c%m'%(n$? E'icyclic an$ $i**erential gear trains.2. a inematics %* %(r #ar? Sli$er ran8? ran8 =%c8er? )%(,le cran8? )%(,le r%c8er? scillating

    cylin$er Mechanisms., inematics %* single an$ $%(,le (niersal 7%ints.

    3. a )eterminati%n %* Mass m%ment %* inertia %* ly 9heel an$ A@le system., )eterminati%n %* Mass M%ment %* Inertia %* a@isymmetric ,%$ies (sing T(rn Ta,le a''arat(s.c )eterminati%n %* Mass M%ment %* Inertia (sing ,i*ilar s(s'ensi%n an$ c%m'%(n$

    'en$(l(m.4. M%t%riBe$ gyr%sc%'e St($y %* gyr%sc%'ic e**ect an$ c%('le.5. "%ern%r )eterminati%n %* range sensitiity? e**%rt etc.? *%r

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    , reeree ,eamc Sim'ly s(''%rte$ ,eam.

    ME"12 THERMAL ENGINEERING LABORATORY II L T P C0 0 3 2

    OB-ECTIVES

    T% st($y the heat trans*er 'hen%mena 're$ict the releant c%e**icient (sing im'lementati%n

    T% st($y the 'er*%rmance %* re*rigerati%n cycle c%m'%nents

    LIST OF EPERIMENTS

    HEAT TRANSFER LAB 301. Thermal c%n$(ctiity meas(rement (sing g(ar$e$ 'late a''arat(s.2. Thermal c%n$(ctiity meas(rement %* 'i'e ins(lati%n (sing lagge$ 'i'e a''arat(s.

    3. )eterminati%n %* heat trans*er c%e**icient (n$er nat(ral c%necti%n *r%m a ertical cylin$er.4. )eterminati%n %* heat trans*er c%e**icient (n$er *%rce$ c%necti%n *r%m a t(,e.5. )eterminati%n %* Thermal c%n$(ctiity %* c%m'%site 9all.6. )eterminati%n %* Thermal c%n$(ctiity %* ins(lating '%9$er.&. Heat trans*er *r%m 'in*in a''arat(s Cnat(ral D *%rce$ c%necti%n m%$es-. )eterminati%n %* Ste*an #%ltBmann c%nstant./. )eterminati%n %* emissiity %* a grey s(r*ace.10. E**ectieness %* Parallel c%(nter *l%9 heat e@changer.

    REFRIGERATION AND AIR CONDITIONING LAB 11. )eterminati%n %* P %* a re*rigerati%n system2. E@'eriments %n Psychr%metric 'r%cesses

    3. Per*%rmance test %n a reci'r%cating air c%m'ress%r4. Per*%rmance test in a H =e*rigerati%n System5. Per*%rmance test in a *l(i$iBe$ #e$ %%ling T%9er

    TOTAL 4 PERIODSOUTCOMES

    A,ility t% $em%nstrate the *(n$amentals %* heat an$ 're$ict the c%e**icient (se$ in that trans*er

    a''licati%n an$ als% $esign re*rigerati%n cycle.

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S.No. NAME OF THE E>UIPMENT >).

    1 "(ar$e$ 'late a''arat(s 1 %.

    2 +agge$ 'i'e a''arat(s 1 %.3 at(ral c%necti%nertical cylin$er a''arat(s 1 %.

    4 %rce$ c%necti%n insi$e t(,e a''arat(s 1 %.

    5 %m'%site 9all a''arat(s 1 %.

    6 Thermal c%n$(ctiity %* ins(lating '%9$er a''arat(s 1 %.

    & Pin*in a''arat(s 1 %.

    - Ste*an#%ltBmann a''arat(s 1 %.

    / Emissiity meas(rement a''arat(s 1 %.10 Parallelc%(nter *l%9 heat e@changer a''arat(s 1 %.

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    11 Singlet9% stage reci'r%cating air c%m'ress%r 1 %.

    12 =e*rigerati%n test rig 1 %.

    13 Airc%n$iti%ning test rig 1 %.

    14 H =e*rigerati%n System 1 %.

    15. l(i$iBe$ #e$ %%ling T%9er 1 %.

    ME"13 METROLOGY AND MEASUREMENTS LABORATORY L T P C0 0 3 2

    OB-ECTIVES

    T% *amiliar 9ith $i**erent meas(rement e(i'ments an$ (se %* this in$(stry *%r (alityins'ecti%n

    LIST OF EPERIMENTS1. T%%l Ma8erGs Micr%sc%'e

    2. %m'arat%r3. Sine #ar4. "ear T%%th ;ernier ali'er5. l%ating ga(ge Micr%meter6. % %r$inate Meas(ring Machine&. S(r*ace inish Meas(ring E(i'ment-. ;ernier Height "a(ge/. #%re $iameter meas(rement (sing telesc%'e ga(ge10. #%re $iameter meas(rement (sing micr%meter11. %rce Meas(rement12. T%r(e Meas(rement13. Tem'erat(re meas(rement

    14. A(t%c%llimat%r

    OUTCOMES

    TOTAL 4 PERIODS

    A,ility t% han$le $i**erent meas(rement t%%ls an$ 'er*%rm meas(rements in (ality im'(lsi%n

    LIST OF E>UIPMENT FOR A BATCH OF 30 STUDENTS

    S.No. NAME OF THE E>UIPMENT >).

    1 Micr%meter 5

    2 ;ernier ali'er 5

    3 ;ernier Height "a(ge 2

    4 ;ernier $e'th "a(ge 2

    5 Sli' "a(ge Set 16 "ear T%%th ;ernier 1

    & Sine #ar 1

    - l%ating arriage Micr%meter 1

    / Pr%*ile Pr%7ect%r T%%l Ma8ers Micr%sc%'e 1

    10 Parallel c%(nter *l%9 heat e@changer a''arat(s 1

    11 Mechanical Electrical Pne(matic %m'arat%r 1

    12 A(t%c%llimat%r 1

    13 Tem'erat(re Meas(ring Set(' 1

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    14 %rce Meas(ring Set(' 115 T%r(e Meas(ring Set(' 1

    16 %%r$inate meas(ring machine 11& S(r*ace *inish meas(ring e(i'ment 1

    1- #%re ga(ge 1

    1/ Telesc%'e ga(ge 1

    ME""01 DESIGN OF TRANSMISSION SYSTEMS L T P C3 0 0 3

    OB-ECTIVES

    T% gain 8n%9le$ge %n the 'rinci'les an$ 'r%ce$(re *%r the $esign %* Mechanical '%9er

    Transmissi%n c%m'%nents.

    T% (n$erstan$ the stan$ar$ 'r%ce$(re aaila,le *%r )esign %* Transmissi%n %* Mechanical

    elements

    T% learn t% (se stan$ar$ $ata an$ catal%g(es C>se %*

    P S " )esign )ata #%%8 'ermitte$

    UNIT I DESIGN OF FLEIBLE ELEMENTS 9)esign %* lat ,elts an$ '(lleys Selecti%n %* ; ,elts an$ '(lleys Selecti%n %* h%isting 9ire r%'esan$ '(lleys )esign %* Transmissi%n chains an$ S'r%c8ets.

    UNIT II SPUR GEARS AND PARALLEL AIS HELICAL GEARS 9S'ee$ rati%s an$ n(m,er %* teeth%rce analysis T%%th stresses )ynamic e**ects atig(e strength act%r %* sa*ety "ear materials )esign %* straight t%%th s'(r D helical gears ,ase$ %n strengthan$ 9ear c%nsi$erati%ns Press(re angle in the n%rmal an$ transerse 'lane E(ialent n(m,er %*teeth*%rces *%r helical gears.

    UNIT III BEVEL, $ORM AND CROSS HELICAL GEARS 9Straight ,eel gear T%%th termin%l%gy? t%%th *%rces an$ stresses? e(ialent n(m,er %* teeth.Estimating the $imensi%ns %* 'air %* straight ,eel gears.

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    Q >'%n c%m'leti%n %* this c%(rse? the st($ents can a,le t% s(ccess*(lly $esign transmissi%nc%m'%nents (se$ in Engine an$ machines

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    TET BOOS1. #han$ari ;? )esign %* Machine ElementsJ? 3r$ E$iti%n? Tata Mc"ra9Hill #%%8 %? 2010.2. %se'h Shigley? harles Misch8e? =ichar$ #($ynas an$ eith is,ett Mechanical

    Engineering )esignJ? -th E$iti%n? Tata Mc"ra9Hill? 200-.

    REFERENCES1. S(n$arara7am%%rthy T. ;? Shanm(gam .? Machine )esignJ? An(ra$ha P(,licati%ns?

    hennai? 2003.2. "itin Maitra? +. Prasa$ Han$ ,%%8 %* Mechanical )esignJ? 2n$ E$iti%n? Tata Mc"ra9Hill?

    2001.3. Pra,h(. T..? )esign %* Transmissi%n ElementsJ? Mani **set? hennai? 2000.4. .S.Sharma? amlesh P(r%hit? )esign %* Machine ElementsJ? Prentice Hall %* In$ia? Pt. +t$.?

    2003.5. #ernar$ Hamr%c8? Steen Schmi$? #% ac%,s%n? (n$amentals %* Machine ElementsJ?

    2n$ E$iti%n? Tata Mc"ra9Hill #%%8 %.? 2006.6. =%,ert . (inall an$ (rt M. Marshe8? (n$amentals %* Machine )esignJ? 4

    thE$iti%n?

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    ty'es +ine an$ sta** a(th%rity $e'artmentaliBati%n $elegati%n %* a(th%rity centraliBati%n an$$ecentraliBati%n %, )esign H(man =es%(rce Management H= Planning? =ecr(itment?selecti%n? Training an$ )eel%'ment? Per*%rmance Management ? areer 'lanning an$ management.

    UNIT IV DIRECTING 9%(n$ati%ns %* in$ii$(al an$ gr%(' ,ehai%(r m%tiati%n m%tiati%n the%ries m%tiati%naltechni(es 7%, satis*acti%n 7%, enrichment lea$ershi' ty'es an$ the%ries %* lea$ershi'

    c%mm(nicati%n 'r%cess %* c%mm(nicati%n ,arrier in c%mm(nicati%n e**ectie c%mm(nicati%n c%mm(nicati%n an$ IT.

    UNIT V CONTROLLING 9System an$ 'r%cess %* c%ntr%lling ,($getary an$ n%n,($getary c%ntr%l techni(es (se %*c%m'(ters an$ IT in Management c%ntr%l Pr%$(ctiity 'r%,lems an$ management c%ntr%l an$'er*%rmance $irect an$ 'reentie c%ntr%l re'%rting.

    TOTAL 4 PERIODSOUTCOMES

    >'%n c%m'leti%n %* the c%(rse? st($ents 9ill ,e a,le t% hae clear (n$erstan$ing %*

    managerial *(ncti%ns li8e 'lanning? %rganiBing? sta**ing? lea$ing D c%ntr%lling an$ hae same,asic 8n%9le$ge %n internati%nal as'ect %* management

    TETBOOS

    1. Ste'hen P. =%,,ins D Mary %(lter? ManagementJ? Prentice Hall CIn$iaPt. +t$.? 10th

    E$iti%n?200/.

    2. A St%ner? reeman =.E an$ )aniel = "il,ert ManagementJ? 6th E$iti%n? Pears%nE$(cati%n? 2004.

    REFERENCES1. Ste'hen A. =%,,ins D )ai$ A. )ecenB% D Mary %(lter? (n$amentals %* ManagementJ &

    th

    E$iti%n? Pears%n E$(cati%n? 2011.2. =%,ert reitner D Mamata M%ha'atra? ManagementJ? #iBtantra? 200-.3. Har%l$ %%ntB D HeinB

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    UNIT III TRANSMISSION SYSTEMS 9l(tchty'es an$ c%nstr(cti%n? gear ,%@es man(al an$ a(t%matic? gear shi*t mechanisms? er $rie?trans*er ,%@? *l(i$ *ly9heel? t%r(e c%nerter? 'r%'eller sha*t? sli' 7%ints? (niersal 7%ints ?)i**erentialan$ rear a@le? H%tch8iss )rie an$ T%r(e T(,e )rie.

    UNIT IV STEERING, BRAES AND SUSPENSION SYSTEMS 9

    Steering ge%metry an$ ty'es %* steering gear ,%@P%9er Steering? Ty'es %* r%nt A@le?Ty'es %* S(s'ensi%n Systems? Pne(matic an$ Hy$ra(lic #ra8ing Systems? Antil%c8 #ra8ing SystemCA#S? electr%nic ,ra8e *%rce $istri,(ti%n CE#) an$ Tracti%n %ntr%l.

    UNIT V ALTERNATIVE ENERGY SOURCES 9>se %* at(ral "as? +i(e*ie$ Petr%le(m "as? #i%$iesel? #i%ethan%l? "as%h%l an$Hy$r%gen in A(t%m%,iles Engine m%$i*icati%ns re(ire$ Per*%rmance? %m,(sti%n an$ Emissi%nharacteristics %* SI an$ I engines 9ith these alternate *(els Electric an$ Hy,ri$ ;ehicles? (el ell%te Practical Training in $ismantling an$ assem,ling %* Engine 'arts an$ Transmissi%n Systemssh%(l$ ,e gien t% the st($ents.

    TOTAL 4 PERIODSOUTCOMES

    >'%n c%m'leti%n %* this c%(rse? the st($ents 9ill ,e a,le t% i$enti*y the $i**erent c%m'%nents ina(t%m%,ile engineering.

    Hae clear (n$erstan$ing %n $i**erent a(@iliary an$ transmissi%n systems (s(al.

    TET BOOS1. ir'al Singh? A(t%m%,ile EngineeringJ? ;%l 1 D 2? Seenth E$iti%n? Stan$ar$ P(,lishers? e9

    )elhi? 1//&.2. ain .. an$ Asthana .=.#? A(t%m%,ile EngineeringJ Tata Mc"ra9 Hill P(,lishers? e9

    )elhi? 2002.

    REFERENCES1. e9t%n ?Stee$s an$ "aret? M%t%r ;ehiclesJ? #(tter9%rth P(,lishers?1/-/.

    2. %se'h Heitner? A(t%m%tie Mechanics?J Sec%n$ E$iti%n? East

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    UNIT II ONEDIMENSIONAL PROBLEMS 9ne )imensi%nal Sec%n$ r$er E(ati%ns )iscretiBati%n Element ty'es +inear an$ Higher %r$erElements )eriati%n %* Sha'e *(ncti%ns an$ Sti**ness matrices an$ *%rce ect%rs Assem,ly %*Matrices S%l(ti%n %* 'r%,lems *r%m s%li$ mechanics an$ heat trans*er. +%ngit($inal i,rati%n*re(encies an$ m%$e sha'es. %(rth r$er #eam E(ati%n Transerse $e*lecti%ns an$ at(ral*re(encies %* ,eams.

    UNIT III T$O DIMENSIONAL SCALAR VARIABLE PROBLEMS 9Sec%n$ r$er 2) E(ati%ns in%ling Scalar ;aria,le (ncti%ns ;ariati%nal *%rm(lati%n initeElement *%rm(lati%n Triang(lar elements Sha'e *(ncti%ns an$ element matrices an$ ect%rs.

    A''licati%n t% iel$ Pr%,lems Thermal 'r%,lems T%rsi%n %* %n circ(lar sha*ts :(a$rilateralelements Higher r$er Elements.

    UNIT IV