R. H. SAPAT GOLLEGE OF ENGINEERING MANAGEMENT ...

142
' \^!fi. $., 16.' Pc{r.7 ] Gokhale Education Society's R. H. SAPAT GOLLEGE OF ENGINEERING MANAGEMENT STUDIES & RESEARCH 2.3.4 lnnovation and Creativity in teaching- learning CIPAL C,l,&l R L Sqat coilege ef hgg. $ Sdhs & Resouoh Prln T. A Kuikarni YidYa Nagar, !i6ftlk{' E Sr. No. Description of proofs attached Page No. 1 Learning through real life problems learning method: Project Based Learning(mini projects) lndustry sponsored projects Field projects Self 7-7 2 Use of ICT 8-15 3 Use of Modern Tools t6-29 4 Exploratory learning 5 Problem-based learning 35-38 Peer- Lead Team Learning: 39-43 7 Technical Seminar as method of learning 44-47 Expert Talks and Motivational Talks for students 48-54 9 Learning through Competitions: 10 lndustrial Training 7t-81 7L Participation in Conference, Seminars and workshops t2 Learning through consultancy work 90-93 13 Skill development workshops 94-99 Faculty Development Programs 100-104 15 Faculty Participation in conferences/seminars 105-112 15 lndustry Exposure/lnteractions for Faculty 713-727 Teachers Orientation Programs (TOpS) (Teaching Methods) 122-129 18 Teachers Technical Orientation Programs (lnternal faculty deve lop ment) NASHIK'5 o{ + Index for Proofs Attached 30-34 6 8 55-70 82-89 L4 L7 130-141 +

Transcript of R. H. SAPAT GOLLEGE OF ENGINEERING MANAGEMENT ...

' \^!fi. $., 16.' Pc{r.7 ]

Gokhale Education Society's

R. H. SAPAT GOLLEGE OF ENGINEERINGMANAGEMENT STUDIES & RESEARCH

2.3.4 lnnovation and Creativity in teaching- learning

CIPALC,l,&l R L Sqat coilege ef hgg.

$ Sdhs & ResouohPrln T. A Kuikarni YidYa Nagar, !i6ftlk{'

E

Sr.

No.Description of proofs attached Page

No.1 Learning through real life problems learning method:

Project Based Learning(mini projects)lndustry sponsored projectsField projects

Self 7-7

2 Use of ICT 8-15

3 Use of Modern Tools t6-294 Exploratory learning

5 Problem-based learning 35-38

Peer- Lead Team Learning: 39-43

7 Technical Seminar as method of learning 44-47

Expert Talks and Motivational Talks for students 48-54

9 Learning through Competitions:

10 lndustrial Training 7t-81

7L Participation in Conference, Seminars and workshops

t2 Learning through consultancy work 90-93

13 Skill development workshops 94-99

Faculty Development Programs 100-104

15 Faculty Participation in conferences/seminars 105-112

15 lndustry Exposure/lnteractions for Faculty 713-727

Teachers Orientation Programs (TOpS) (Teaching Methods) 122-129

18 Teachers Technical Orientation Programs (lnternal facultydeve lop ment)

NASHIK'5

o{

+

Index for Proofs Attached

30-34

6

8

55-70

82-89

L4

L7

130-141

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·Project Based Learning(mini Projects) ·Industry sponsored projects Field projects

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Use of ICT

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+Gokhale Education Society's

R.H.SAPAT COLLGE OF ENGINEERING, MANAGEMENT STUDIESANDRESEARCH

Prin. T.A. Kulkarni Vidyanagar,Nashik- 422 005.

DEPARTMENT OF MECIIAMCAL ENGINEERING

Workshop on

"Vibration Measurement Using FFT Analyzer"

03l02l20l8Class: ME rrI

10.l5am -12.15pm

MEI,MEII

1.00-4.00 pm

MEI,MEII

Workshop Coordinator

Prof R.S.Pawar

Dr.P.B.N1n-'ir,i

\'\g .4frri,t-/ DT.SR.TARFi .C.Kulkami

Principal

Time/Batch Activity Topics

Session-I

1

I

Introduction to Vibration, Measurement &coifrol of Vibrations(Rgtiew of Vibration, Types of ConventionalV.lbration measuring instruments, Introduction to theFFT Analyzer, Construction working Block diagramof FFT Analyzer, Different Tests that can beperformed on FFT Analyzer, Signature Analysis-Study Analysis of different Spectrum, ConditionMonitoring - Condition Monitoring Techniques

Session -II

Vibration Anal5zer - FFT (for ConditionMonitoring)(lntroductioq Analysis of spectrum,Case studies-

1) Vibration Measurement of CrackedCantilever Beam using FFT

2) Engine Vibration Measurement: Twowheeler/Four wheeler car.

3) Condition Monitoring of lathe tvllC

NA$llK'5

of

ME Coordinator H.O.D

i

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Use of Modern Tools

' Gokhale Education Society'sR. H. Sapat College of Engineering, Management Studies and Research, Nasik

Mechanical Engineering Department

One DavsWorkshop on

"Yibration Measurement Using FFT Analyzer"

ATTENDANCE REPORT $l.z,l1l

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Sr. No. Name ofthe Student

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Workshop Coordinator

Prof.R. S.Pawar

Dr.P.B.Nehe

ME Coordinator

Dr.S.R.Tare

H.O.D

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Gokhale Education Society's

R. H. Sapat College of Engineering, Management Studies & Research, Nashik.

Department of MCA(Engg)

Depa rtmental Activitv schedule 2017 -18

Date:0510412017

Following activities are schedulelor the academic year 2017-18 in semester II for FY and SY students

Sr.

No.

Activity Conducted Date of Execution

I Article Reading -Speaking Tree 6" Jan 2018

2 Know yourselfand memory games l3'h Jan 2018

3 Real Life Stories Narration 20'h Jan 2018

4 Extempore (On the spot topic presentation) 3" Feb 2ol85 Skit(Act on given theme) 3'd March 2018

6 Aptitude Test l0h March 2018

7 Quiz Competition 17ft March 20188 Group Discussion 24" March 2018

9 Conclusion 31" March 2018

maJProf. R. C. Samant & Prof. S. B. Kolpe

Departmental Activity Coordinator

f. P. A. Chaudhari

HOD

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Exploratory learning

Sheetl

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&.H,,.Q.ap-al !ollege. o,f EngineerilC, Mltlggt"lt Stu!r3-s-1nd Research

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PRANJALI PRABHAKAR PATILRAKHEE VIJAY PATIL ,d@t R.toPz-

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SRNO. ACTIVTTY NAME DATE

I BOOSTYOURENERGY 23t06n4

) ICONIC AGILE 30t06n4

3 BITS & BYTES OF DIGITAL WORLD 07t07fi4

4 ENLIGHTEMENT t4l07lt4

5 MINI FRESHERS 04t08n4

6 SHARE YOUR KNOWLEDGE t9/08n4

7 GROUP DISCUSSION & DEBATE 0u09fi4

8 PENNING YOUR THOUGHTS 15t09fi4

DEPARTMENTAL ACTIVITY SCHEDULE A.Y.2014.T5 (SEM I)

PROF. N.V.BHATAMBAREKAR

PROF.RV.TATIYA H.J

[DEPARTMENTAL ACTIVITY CO.ORDINATORS]

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Name SignRoll NoAHIRE TEJASHRI 'ft>j&;"r--AHIRRAO VRUSHALI SHAMRAO zW^t+b\.O2

rr d,3 ANSARI HUMABACCHAV PRAFFUL ctI4

c5 BHAMARE POONAM RAMRAO W,t.CHAUDIIARI TUSHAR NARAYAN6

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18 GADAKH SATISH (iy...d&L19 GARUD KUSHAL Fi.r+:4-20 GATKAL SWATI VALU2t GAVIT VRISHALI Porcfl- .

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KAKULATE PANKAJ KEDA29

3J KALE PRIYANKA SHANTARAM31 KARDEKAR CHETAN SAHEBRAO UMd32 KHARAT SANDHYA HARIBHAU *e*33 KHARCHE NIKHIL ASHOK fcli 6tr34 KULKARM GANDHARVINOD ?r--35 KULTHE NIKHIL ARUN

MAIIALEVIKAS36

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Khirsagar Swapnil vinning GroupNikam Shrut.iI\ifahajan pavan

&!el Pooja,.,Dhotre Ravindra

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Problem-based learning:

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Peer- Lead Team Learning

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Cokhale Education Sociefy's

RH.SAPAT COLLEGE OF ENGINEERING MANAGEMENT STUDIES & RESEARCH. NASHIKDEPARTMENT OF EI-ECTRICAI, I.]N(]INEI.]RIN( ;

SECOND YDAR : 2018-19 (DIV -A) SEM- ISEMINAR BATCTIES

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Technical Seminar as method of learning

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Gokhaie Education Society's

R. H. Sapat College of Engineering, Management Studies &Research, Nashik-422005

Department of Computer Engineering

NOTICE

Dear Students,

The Computer Department is organising a Expert Talk on "SoftwareDevelopment and Proiect Management" by Ms. Sulbha Mhaske CISCO, USA,. Theseminars will consist of understanding Software development lifecycle.

The interested students should attend this expert session organized on Friday,04lo7 /L4 at 11.00 a. m. All students must aftend this session.

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Expert Talks and Motivational Talks for students

5DFf4 2_C"l-rr

R H Sapat COE Maragement Studies & Researah

Department of Computer Enginecring

Software Development and P.oject ManagementYear : 8E

Dele-0410712074 Bv:Mr.sulbhaMhaske

Rol! No Name RollNo NameI AHIIII MAYUR AMRUTR O 41 PIIND ISHWARI VT.SUD'V

2 AH]RE PRASI IANI MADHT]XAR 42 RUMANE STIARAD AMBATJ S

ATTARDE VINTIA PRAX SH 43 STIAIKH ROZ-I,IIN JAVEED

BAGUL MONII(A BHASXT1R SI'ARMA NEHA KIS]IAM- L

5 BA.RDU BHUSIiAN RAVINDRA 45 SHIND! PRIT}MRAI JAIINDAR

BHI]SE NINXYA DADAJI 46 SUT"AXSI IANE YI]CANDHARA YqJARiJ

1 BODAI(E PRACBT NA\NA'i H 47 TAJ NE VRUSE'.LI SUBI IASH

3 BUTTE AKSLiAY RAW(TJMAR 48 THORAT STIWETA DEE?AK

9 DESHMUKH MAHESII J Y(RISHNA.T.AO 49

l0 DIXN'(ASHMIRA RAVIKANT 50 \TIDEA'I'E SAVAN SIIANXAR

II DIXII' SAILEE DEEPAX 51 VI'ENDRA SURTiSH SOMAVANSHI

t2 EXII,ANDE PRAXASH NANA 52 VYAWAHARE PRAIIKSIiA R]AJENDRA

ll GACARE A}IIL PRAXASI I s3 WADNERE PRIYANXA ARL'N

\4 GEDAM SNEEA RAVINDRA 54 WAGII ANACTIA I IITENDRA

l5 GIIULE RUTU'A YOOESH 55 WANI I}IIAGYASHREE KAMAT4IGR

16 GIDCT' XARISIIMA KISHOR 56 WARKI] \lSHAKIIA MANOHAR

t1 Cn)KIIALE MAN'USHRIE PRAXASH

l8 OOSA\'I MAYURI STTACWANGIR]

t9 IADIIAV HAIISTIADA YISTIWANATH

20 JAIN UMESH ANILKI]'MAR

71 JAWAIE DAMINI SIIASHIXANT

22 ,OSHI SHRUII RAJENDRA

E KAKLI' SONAII I(AII.AS

24 XANXARIYA KARISHMA VIJAY

25 KARMASE SHRADDHA RAIENDRA

KOTXAR HTAKSHI PRNMOD

KSIIIRSAGAR PR{AXTA VUAY

28 KT]L(ARM DTIANAN.IAY M]IJND

a KT'TKE SWATI EHAUS HB30 MATIALTJ PRryANKA RAMESH

ll MALVANI NISHA MOTAN

32 MEMANE MONIKA BIIAS(AR

3l PANSE JUITIE CLIANDR.{SHEKTI,AR

PA.RISHAR POOJA JEEVANI-AL

l5 PATIL XALYANI ANIL

16 PAWAR XANCTIAN KAIIIS

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39 POOJARY SWETHA SUDHAKAX

40 PREETI YADAV

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Roll No I{ameALFATMI ru LID F^ROol]I IE

2 BITATAMBAFJ'I(AR NE}I,{ VUAY

7 CAR! KAVTTA GORAKH

Clo6A\N RUTUJA UPENDRA

HA!{MR! JAYSI IRLT_. SHRIKAM'

KADAM PANXAJ I(AMDAS

8 KULXARM ^Dtn

IIK{SXT'LXARNI VAISHNAVI SHRIPAD

TOKHANDE PIAJA(TA PADMAKAR

U MAIIK VIKAS DNYANESHWAR

12 MORE REENA SHA&,{DRAO

l3 OKE PRACHI ST]NIL

PATII PRIYAN(A NTM{

l5 PISOL(AR UTKAASIIA PRASTIANT

l6 RAUNDAL SNEIAL HIRAMAN

l7 SANCALE SUNIL HIR,AM N

t3 TAMBD UJWAI-A SAM?AT,TATTYA

RIJCTtrrA VIX.AS

20 IJTASANI MRUNAL vIvEK

2t VIBHANDIK DEEISHRIE SOMNATH

27

R H Sapat COE Managem€nt Studles & Research

Depanment of Computer Engineerintsoltware D€velopment and ProJect ManaSement

Year : ME

Oare44l07 12074 Mr.sulbh. Mhaske

9

yffsHOD, Computer Oept

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ffGokhale Education Society's

R.H.SAPAT GOLLEGE OF ENGINEERINGMANAGEMENT STUDIES & RESEARCH

Affiliated to University of Pune r Recognized by Govt. of MaharashtraApproved by AICTE, New Delhi & DTE (M.S.), Mumbai

Mechanical Engineering Department

Ref : GESRHSCOEMech/2O!6/ ?,Q9

I etter of hlvitation

Date> ll/ 02 12016

To,(Dr.) Prashant B. Nehe,IIT Bombay,

@ Sub :Jnvitation for Expert Lecture on "Project Report Writing"...

Dear Sir,

We are conducting I-CUBE activity since 2013, which is canied under the aegis of'MESA. In this activity we are providing the studentS with extra inputs other than syllabus in the

form of Workshops, expert lectures, training, seminars, Industry visits etc.

We request you to deliver expert lecture on "Project Report Writing" on l2s February

2016 to final year engineering students and also guide our students, and share your experiences.

We will be grateful to you if you accept this invitation.

Thank you.

Yours Truly,

Prof. K. V. ChandratreHead of Deptt.

Mechanical Engineering Department

prin. T.A. Kulkarni Vidyanagar, Nashik - 422005, Maharashtra, lndia. Contact i 0253-2570104 8 0253-2570106'

Web-site : www.ges-coengg.org r E-mail: principal@ges-coengg org

b

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This Certificate is Presented to Bhokare Shubham Balasaheb

for Competing in the Grand Finale of ʹSmart India Hackathon 2017ʹ

on 1st and 2nd April 2017 under Ministry of AYUSH

Thank you for participating in this unique nation building initiative.

Dr. Abhay JereSecretary, Organizing Committee,

Smart India Hackathon 2017

Dr. Arun JamkarPresident, i4C

i4cID: 4598

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Learning through Competitions

This Certificate is Presented to Kasar Yogita Hemraj

for Competing in the Grand Finale of ʹSmart India Hackathon 2017ʹ

on 1st and 2nd April 2017 under Ministry of AYUSH

Thank you for participating in this unique nation building initiative.

Dr. Abhay JereSecretary, Organizing Committee,

Smart India Hackathon 2017

Dr. Arun JamkarPresident, i4C

i4cID: 4598

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This Certificate is Presented to Aher Ankita Digamber

for Competing in the Grand Finale of ʹSmart India Hackathon 2017ʹ

on 1st and 2nd April 2017 under Ministry of AYUSH

Thank you for participating in this unique nation building initiative.

Dr. Abhay JereSecretary, Organizing Committee,

Smart India Hackathon 2017

Dr. Arun JamkarPresident, i4C

i4cID: 4598

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Industrial training

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Participation in Conference, Seminars and workshops

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Learning through consultancy work

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Skill development workshops

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,i:

+, 9tt*,tt !-.1+e r.frpr, ,, e L- - foi{- f i- g f or"l* "J Cr)

Genter for Advanced Electrical Technology And Designs403, 4ri Floor, sR Arcade, Ashok slambh, NASHlK.422ool

e-mail - caetad.govt @ gmail.com, cell- 7758820530, 9860502028

C-AETAD

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Rel.- ECw li12l2o17 Ddle- 2310112017

The PrincipalR. H. Sapat College of EngineeringCollege Road, NASHIK.

Subject r Practical type training program on"Electrlcal Gontrol Panel Dsslgn and Circuits"

Kind Atln. i Head of Deparknent, Electrical Engineering,

Respected sir,As a part of "Skill lndia Drive" we have started the Certified Electrical Skill

Development Training Program's in Nashik for provide practical oriented training ofElectrical Control Panel Design's & Advanced Electrlcal Clrcuit's to the final year / passout sfudents of Dsgree in Electrical Englneerlng for their carrier transformation inelectrical tield.

Under this scheme, I would like to deliver 2 hrs. seminar foryour Final year studentsof Degree ln Electrlcal Englneering at your seminar hall. Please schedule the suitable dateand time for the same and inform us as early as possible.

Guest Faculty,Shrikant V. Jadhav (OEE)25 years working experience in ABB,Own Business ofElectrical Control Panel Designing and manufacfuring,from last 10 years.

*t!.

$

Please consider our klnd request. Looking forward to your constructive response inthe matter.

Your s truly,

%Shrikant JadhavProject HeadCenter for Advanced Electrical Technology And Design,s

Complete ElectIical Tecnology

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Complete Electrical Tecnology

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MAEER'SMIT CoIIege of Ingineering, pune sAV[n$^, trlulI aUtE UXrVairrIY

DEPARTMENT OF COMPUTER ENGINEERING

@erttftrste uf ffiurttrtputtun

has participated in a Faculty Development Programme on "LABORATORY PRACTICE I" organized by

MIT College ofEngineering, Pune, in association with BoS Computer Engineering, SppU, pune.

... r Coordinators, Dr.Anil irvale Dr: RamaMITC0X, Pune Princi

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This is to certify that Prof./Dr./Mr./JvIrs./NIs.

PuneDirector

MITCOE, Pune

RAMME.

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Faculty Development Programs

Sardar Vallabhbhai National Institute of TechnologySurat - 395007, Gujarat, India

TEQIP (III)Sponsoredlivo Week Short Term Tlaining Program (STTP) on

CERTTFICATE

(fiis is to Qertfl tfrdt Ar. /n4r, /fr4rs /tuls Mandar l(adu Chaudhari of

....,.,,.,.,,.,,,.9.5.:f.f.'.999F.t1:.9.,&..1!3,?,i!f,,,.,.,.. fras attenrer (IEeIe-III sponsorer (wo ,ttee{

Sftort']lerm (raining Qrogram (Sffq on "Computer Aided Techniques for Electrical

Machines and Power Systems" Organize[ Sl Department of Q,fectrica[Engineering, Sarcfar

'lattaSti\fiaitlrationafInstitute of'lecfinotog1, Surat [uring 11 - 21 lune, 2018.

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Sanjivani

tr/AI{I COI,sAll;JxPARKO AhmednagarGAON

Approved by AICTE, New Delhi, Afrliated to Savitribai ?hule Pune University, Pune

Accredited \trittr G rzlle n 1{ by NAAC, BangaloreAn ISO 9001:X008 Certified Insti{xte

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Matoshri Education Society'sMatoshrl Educatlon Soclety'B

Matoshri College of Engineeringand Research Centte, Nashih

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This is to certifu thatMr./Ms. ?rof . T. 0. A tr irra.o of

oklu)c EJucn+ioo Soc e , rrlasf i k. has participated in one day Faculty

Development Program for the subject Fundamentals of Programming Languages - II organized by

Matoshri College of Engineering & Research Centre, Eklhare, Nashik.

on Monday, 206 February 2017.

*Dr. P V. H. Dr. Kharate G. K

Principal' Coordinator, BOSComputer Engineering Faculty

SPPU Pune

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Btiltlrd R.,'lnalh AltnNal Chlrltlbh rt!31'!

wakarma lnstitute of lnformation Technology

;ffi-Prof.D..S.V.Kulkarni

HeadE&TC, Vllr

Prol.Dr.(Mrs.)B.S,KarkareOirector

VllI, Pune

8oS. EITC, SPPU

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Department tf Xlectronics & Telecommulication

FACU ITY ORIENTATION I/YORKSHOP

This is to cerrify thar Prof. .S.: m. Rc.k-shit -*--*--*;*--has

attended

Faculty orientation workshop on "Elective-Ill - Machine Learning / Audio and f idco Engineering

i PLC and Automation", for B. E. E&TC ltlcctronics Revisett Syllabus 2015 Patrcm conductcd

jointtybyDepartmentofElcctronics&TelecornmunicationEtlgineering.V|lT.PuneandBoartloi

Studics - E&TC, Savitribai Phule Pune University on 2l'' December 2018'

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The Indian Concrete Journal February 2017 71

POINT OF VIEW

Equivalent static analysis of box culvert for fire tender loading

Prasad R. Vaidya

Dynamic moving live load can be considered as an equivalent static wheel load for the particular vehicle class and its wheel configuration. This paper elaborates loading considerations, modeling and analysis of double cell box culvert for fire tender loading. The critical loading conditions for cover slab, base slab and walls are discussed. The culvert is modeled by using finite element software. The interpretations of analysis results for different elements are presented. The present study aims to establish a procedure for computer aided analysis of box culvert especially used under pavement for cross drainage work.

1. IntRoductIonBox culvert is a closed RC structure generally used for water flow across the river while simultaneously allowing traffic over it. The structural elements consist of cover slab, base slab and walls build monolithically. Live load due to moving traffic is considered as a significant load which mainly governs the design. Dynamic analysis for moving load is a difficult and tedious procedure for small and moderate construction. The box culverts are used frequently in modern constructions as a cross drainage work. The airside drainage works in airports are usually with single cell or double cell box culvert with intermediate RC chambers. The culverts which are under runways subjected to aircraft loading are structurally important since they are subjected to heavy loads with impact. The culverts which are used as a cross drainage work under the road are often proved to be more economical than a bridge with abutment and deck slab. The culvert can be a single cell, double cell or multiple cells based on the requirements. The culvert is considered as a rigid frame with cover slab, base slab and vertical walls. The box may be provided with or without cushion depending on road level requirement. In the culvert with considerable

cushion, the live loads on cover slab get dispersed due to cushion depth. However the dead load due self weight of cushion is the predominant load and will govern the design of cover slab. Designs of vertical walls depend upon the lateral thrust exerted by the wheel load in addition to active earth pressure. Earthquake forces are not considered in design of box culvert as per IS 1893:2002 [1].

Haunch is provided at the junction of vertical wall and cover slab for the smooth flow of forces. Base slab is provided with some projection to satisfy bearing requirements of the soil underneath. The thickness of cover slab and the wall is generally kept same to avoid variation in stiffness. The lateral pressure on side walls due to submerged soil can be effectively reduced by providing perforations for vertical walls with pipe sleeves. As the span of culvert increases flexural demand for cover slab will also increase, which is controlled by introducing vertical wall in between and thus making the culvert as multicell.

2. Load cases and suPPoRt condItIonsLoading consideration plays a very crucial role in the analysis of the box culvert. Live load due to wheels of the fire tender vehicle will exert lateral pressure on side walls along with active earth pressure. The reasonable estimate is required to predict the behavior of the walls under the action of these forces. There is a monolithic connection of tank wall and slab. Hence it can be treated as a fixed one. Base slab is supported on soil with full bearing so that the horizontal thrust is resisted by the frictional force developed between concrete and soil. Once the sliding check is satisfied, there is no translation at bottom. At the top the only resistance is passive earth pressure, which is not sufficient for large horizontal trust and hence there will be a translation at the

1

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941 | P a g e

ENHANCEMENT OF LOW RESOLUTION IRIS

IMAGES USING WAVELET TRANSFORM

Miss Pallavi D. Sawant 1, Mrs. Prof. H. H. Kulkarni

2

1PG Student,

2Assistant Professor, G. E. S. R. H. Sapat College of Engineering,

Savitribai Phule Pune University, Nashik, Maharashtra, (India)

ABSTRACT

The aim of image resolution enhancement is to process a given input low resolution image to make the result

more desirable than the original image for a given specific application. There are various image processing

application which requires high resolution images for processing and analysis. One of the commonly used

techniques for image resolution enhancement is Interpolation. Interpolation technique has been widely used in

many image processing applications such as facial reconstruction, in medical field, multiple descriptions

coding, and super resolution. Discrete wavelet transform is used to decompose low resolution image and

stationary wavelet transform is used to preserve edges. Iris recognition is widely used in safety certification. In

large scenes or long distance conditions, the iris images may has low resolution. Lack of information in these

iris images or videos affects the performance of the iris recognition greatly. In this paper, scheme of super

resolution is used to reconstruct high resolution images from low resolution iris image sequences.

Keywords- Image resolution enhancement, Interpolation, Discrete wavelet transform, stationary

wavelet transform, Iris recognition.

I. INTRODUCTION

Digital imaging systems have a variety of applications for commercial, medical and recreational purposes. In

these applications, a high quality image is required to allow human interpretation or machine perception.

However, sometimes the spatial resolution of image is limited by technical considerations of the imaging system

in which the image is captured. Therefore signal processing techniques are used to create a higher resolution

image that will allow for better identification and interpretation of details. The aim of single image super

resolution is to create a high resolution image from a single instance of a low resolution image of the original

scene.

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© 2016, IJCSE All Rights Reserved 1

International Journal of Computer Sciences and EngineeringInternational Journal of Computer Sciences and EngineeringInternational Journal of Computer Sciences and EngineeringInternational Journal of Computer Sciences and Engineering Open Access Research Paper Volume-4, Issue-9 E-ISSN: 2347-2693

Gradient Based Key Frame Extraction for Continuous Indian Sign Language

Gesture Recognition and Sentence Formation in Kannada Language: A

Comparative Study of Classifiers

Ramesh M. Kagalkar1*

and S.V Gumaste2

1*Research scholar, Visvesvaraya Technological University Regional Resource Centre (VTU-RRC),

Visvesvaraya Technological University, Belgaum, Karnataka, India. 2Professor & Head, Computer Engineering, R. H. Sapat College of Engineering, Nashik, Maharashtra, India

Available online at: www.ijcseonline.org

Received: 22/Aug/2016 Revised: 02/Sept/2016 Accepted: 20/Sept/2016 Published: 30/Sep/2016

Abstract— Human hands are delicate instruments. Hand gestures and finger gestures are excellent ways of emphasizing what we

say, but on the other hand they can also reveal our true intentions. In this paper introduced a continuous Indian sign language

recognition system, wherever each the hands are used for playacting any gesture. Recognizing a sign language gestures from

continuous gestures could be a terribly difficult analysis issue. This paper solve the problem using gradient based key frame

extraction technique. These key frames are useful for splitting continuous language gestures into sequence of signs further as for

removing uninformative frames. After splitting of gestures every sign has been treated as associate degree isolated gesture. Then

features of pre-processed gestures are extracted using orientation histogram (OH) with principal component analysis (PCA) is

applied for reducing dimension of features obtained after OH. Experiments are performed on our own continuous ISL dataset which

is created using EOS camera in PG Research Laboratory (SPPU, Pune). Probes are tested exploitation varied forms of classifiers like,

Manhattan distance, Correlation, Manhattan distance, City block distance, Euclidian distance etc. Comparative analysis of our

projected theme is performed with varied forms of distance classifiers. From this analysis we tend to found that the results obtained

from Correlation and Euclidian distance offers higher accuracy then alternative classifiers.

Keywords- Gesture Recognition, Orientation histogram (OH); Correlation; Indian sign language (ISL); Principal component analysis

(PCA);

I. INTRODUCTION

Humans know each other by conveying their ideas,

thoughts, and experiences to the people around them. There

are numerous ways to achieve this and the best one among

the rest is the gift of Speech. Through speech everyone can

very convincingly transfer their thoughts and understand each

other. It will be injustice if we ignore those who are deprived

of this invaluable gift. The only means of communication

available to the vocally disabled is the use of sign language.

Using sign language they are limited to their own world. This

limitation prevents them from interacting with the outer

world to share their feelings, creative ideas and potentials.

Very few people who are not themselves deaf ever learn to

sign language. These limitation increases the isolation of deaf

and dumb people from the common society. Technology is

one way to remove this hindrance and benefit these people.

Several researchers have explored these possibilities and have

successfully an achieved finger spelling recognition with high

levels of accuracy. But progress in the recognition of sign

language, as a whole has various limitations in today’s

applications.

The problem of automated sign language recognition can be

put across as, given a video of a sign language sentence, can

We identify the signs in the sentence and reconstruct the

sentence? The solution to the problem of sign language

recognition has many practical implications. Firstly, advances

in automated sign language recognition are necessary to

improve the quality of life of deaf persons by facilitating their

interaction with hearing populace in public situations. For

instance, the use of innovative computer technologies can

provide a solution to the dilemma a security screener faces in

attempting to communicate with deaf passengers during the

course of daily business activities. Also, it can be helpful in

other places like courtroom, conventions or even a grocery

store. On the other note, human computer interaction (HCI) is

gradually moving towards a modality where speech

recognition will play a major role. While speech recognition

has made rapid advances, gesture recognition is lagging

behind. With this gradual shift to speech based Input output

devices, there is a great danger that persons who rely solely

on sign languages for communication will be deprived access

to state-of-the-art technology unless there are significant

advances in automated recognition of sign languages.

Secondly, the problem of automated sign language

recognition is also worthwhile from a scientific and

technological point of interest, since advances in this problem

would definitely impact the general problem of automated

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IARJSET

ISSN (Online) 2393-8021 ISSN (Print) 2394-1588

International Advanced Research Journal in Science, Engineering and Technology

2nd

International Conference on Advances in Mechanical Engineering(ICAME-2016)

Amrutvahini College of Engineering, Sangamner

Vol. 3, Special Issue 1, March 2016

Copyright to IARJSE DOI 10.17148/IARJSET/ICAME.43 223

Magnetic Mould Casting: Methodology and

Comparison with Traditional Sand Casting

Process

Vishal Sadade1, AmitDhake

2, Nishad Dixit

3, Prof. S. P. Deshpande

4

Under graduate students, Department of Mechanical Engineering, Gokhale Education Society’s, R. H. Sapat College of

Engineering, Management Studies and Research, Nashik, Maharashtra, India1,2,3

Assistant Professor, Department of Mechanical Engineering, Gokhale Education Society’s, R. H. Sapat College of

Engineering, Management Studies and Research, Nashik, Maharashtra, India4

Abstract: Casting is a manufacturing process, which is used directly or indirectly in almost every industry. It is a

primary manufacturing process and has its effect on the properties of the resultant product. In this era there is a demand

to innovate processes, which can reduce lead-time, reduce cost of production without compromising with the quality of

the products and reduce ill effects on environment. Magnetic mould for casting (MMC) is an innovative process having

a great potential to replace conventional casting methods due to various advantages associated with it. The setup of

magnetic mould casting includes winding of copper wire such that it behaves like a solenoid with hollow cavity in

which actual casting process is to be carried out. For making mould two cylinders are used, copper winding is done to

outer cylinder and current is allowed to pass through the wire, this results in generation of magnetic field inside the

cylinder. Ferrous powder is used as moulding material and thermocol as pattern material. The molten metal when poured, it replaces the pattern and takes its shape and once solidified it can be easily taken out of the mould. Magnetic

mould casting reduces the time consumed for sand preparation, mould making and knocking required for casting

removal by completely replacing sand with ferrous powder and use of magnetism. The process is eco-friendly as it

eliminates the use of sand, successfully reduces the overall process time for casting and results in better properties too.

Keywords: Magnetic Mould, Sand casting, ferrous powder, Time study, Properties.

I. INTRODUCTION

Casting is a manufacturing process that can be performed in a number of ways. The type of process employed for

casting has an effect over properties like surface finish, microstructure, hardness, toughness, etc. of the resultant

product. In modern days industries there are many factors, which affects the decision of selecting the type of casting process to be used. This includes properties of cast product, time required for manufacturing and environmental effects

of the process. Magnetic mould casting (MMC) is an application of electromagnetism to the process of casting. Ferrous

Powderconstitutes the mould that is formed by application of magnetic field on it.

The application of magnetic field that induces magnetic bonds between Ferrous particles which gives strength to

mould, this reduces the time elapsed in ramming process. Also, breaking of mould becomes easier by using magnetic

field, as it is required to switch off the supply to turn down the magnetic field and mould breaks. MMC process

employs a one-piece mould and a thermocol pattern, which gives an advantage of cast products being free of defects

associated with joint line (Geffroyet. Al.). Also the products have better dimensional tolerances than the products

obtained from conventional methods. The amount of machining required is less thus reducing the time and cost

involved in finishing a product for use.

The mechanical properties like tensile strength, impact strength and hardness of the products cast from MMC have

higher values as compared to sand casting products (P. Gnanvel). The reason behind this improved might be the higher

solidification rate of Ferrous mould as its thermal conductivity is more than the sand mould (Geffroy et. Al.). A major

concern related to casting is environmental pollution. In casting, foundry waste is releasedand sand once used gets

burnt and is of no use, thus adding up to foundry waste whereas in MMC Ferrous powder can be reused and magnetic

field had not any effect on the worker’s health.

Therefore MMC is an eco-friendly process as waste generation is minimum and due to reusability of mould material.

This process is still in its research phase. There is no evidence of its use in any industry till now but it can be used as a

replacement of conventional methods of casting as this process has certain advantages over them. 6

110 / 141

International Journal of Applied Information Systems (IJAIS) – ISSN : 2249-0868

Foundation of Computer Science FCS, New York, USA

Volume 9 – No.7, September 2015 – www.ijais.org

7

Auto Conversion of Serial C Code into Cuda-C-Code for

Faster Execution Utilizing GPU

Dipak V. Patil Department of Computer Engineering

G.E.S’s R.H. Sapat College of Engineering, Management and Research, Nasik, M.S., India

ABSTRACT The primary accusative of this implementation is to expand the

use of NVIDIA Graphics Processing Units (GPUs) to accelerate

the all-purpose applications outside the graphics arena. CUDA is

a programming language particularly designed for parallel

computation to work. Now a day, C programming is glaringly

used in industries to develop general purpose applications.

Normally, a C program instruction executes sequentially and do

not support data parallel computation, it increases the time

complexity of a program. CUDA renders C like interface,

configured for programming NVIDIA GPU which supports

parallel computation of different parts of same instructions on

different cores of GPU. For ordinary programmers it is very

sticky to write CUDA programs because it involves various

irksome tasks. Today, most of the machines come with NVIDIA

graphics card which contains GPU having numerous processing

cores. It is mainly used during execution of gaming, graphics and

image processing kind of applications. It remains otiose during

execution of general-purpose applications which results into

surplus time. To properly employ the potential of available GPU

cores on graphics cards for accelerating execution of applications

outside graphics domain, the system implemented here provides

an automatic tool that converts the directive based sequential C

program and generates equivalent parallel CUDA program which

will significantly enhance the speed of execution of program

with help of parallel processing support. The C programmers can

use this tool to enhance the speed of execution of their

applications by transforming their directive based C code to

CUDA C code. This tool provides simple user interface and helps

to enhance the performance of the system.

Keywords Parallel Computing, Serial Computing, CUDA, GPU, HPC

1. INTRODUCTION Compute Unified Device Architecture (CUDA) is a parallel

computing system and API designed and developed by NVIDIA.

It permits to use a CUDA-enabled graphics cards (GPU) for all

purpose processing a methodology recognized as GPGPU.

Basically graphics card contains GPU having multiple processing

units are used for performing computer graphics related

applications like computer gaming, animation and playing

movies.

The GPU [1] remains idle during running of general purpose

applications. To enhance the system performance, the computing

capability of the GPU available can get properly utilized during

execution of applications outside the graphics domain. Brook [2]

supports simple data-parallel statements and promotes the use of

the GPU as a co-processor. GPUs have recently increased beamy

popularity among investigators and creators as accelerators for

applications outside the domain of conventional Computer

Graphics [3]. This evolution, known as General-Purpose

computing on the GPU or GPGPU, Largely outcomes from the

big improvements in GPU programmability. Everyone is

interested to get the fast response from computer for this purpose

evolution of HPC is needed. Immediate outcome is the need of

society whenever large amount of data processing taken place. A

emblematic GPU is a multi-core architecture with each core

capable of running thousands of threads concurrently. Hence, an

petition with a large quantity of parallelism can use GPUs to

understand essential performance benefits. GPUs have recently

appeared as almighty platform for general purpose high

performance computing. Programming for GPU is a complex

task as compared to programming CPU and parallel

programming models such as shared memory[4].

The CUDA is a programming language specifically designed to

program NVIDIA GPUs. It is an enlargement to C, CUDA has

rapidly become popular and drawn more and more non-graphics

computer programmer to port existing applications to

CUDA[5,6].

However, experience shows that the porting process is highly

challenging task. In specific, CUDA places on the coder the

burden of packaging GPU code in isolated functions of explicitly

carry off data transfer between the host memory and several GPU

memories, and of manually optimizing the utilization of the GPU

memory. The experiment involve different schemes of

partitioning computation among GPU threads, of optimizing

single-thread code, and of utilizing the GPU memory. As a

outcome, the coder has to make important code alterations,

perhaps many times, before attaining coveted performance.

Practically this operation is very irksome and error prone. Many

of the tasks entangled are mechanical and can be automated by a

this system, system is an attempt to attain such automation. In

this work, research introduces methods for transfer the load from

CPU to GPU for HPC[7][8].

Hardware accelerators, such as GPGPUs, are probable parallel

platforms for HPC. While a GPGPU renders a inexpensive,

highly parallel method to application coders, its programming

complexity poses an essential challenge for programmer. Even

though the CUDA[9] programming model, recently novice by

NVIDIA, offers a more user friendly interface, programming

GPGPUs is tough and error prone, compared to programming

CPUs and parallel programming models such as OpenMP[10].

GPGPUs have lately appeared as compelling conveyance for

general purpose High Performance Computing. CUDA

programming framework [13,14] from NVIDIA offers improved

programmability for common computing, hence, the manual

development of high performance codes in CUDA is more

participating than in other parallel programming [15] models

such as OpenMP. Manual procedure places burden on

programmer to port computation on processors. It is not bendable

7

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Gokhale Education Society's

R. H. Sapat College of Engineering, ManagementStudies and Research, Nashik

Prin. T. A. Kulkarni Vidyanagar, Nashik-422OO5

INDUSTRIAL TRAINING REPORT

By

Prof. Y.D. Kokate

Prof. L.B. Chintamani

Prof. A.T. Sadgir

Prof. S. V. Chakor

Prof. S. M. Rakshit

uo**ltt €oucolox socrtrr,,

g

Date: From l't August 2Ol7 to l4th August 20I7

1

SAHYADRI FARM'S (Seeding Goodness/, jVashik

Er 'g:{c

d

113 / 141

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Text Box
Industry Exposure/Interactions for Faculty:

R.HGokhale Education Society's

Sapat College of Engineering, Management Studiand Research, Nashik

s

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uo*$rrt Eouo''ox sot a ,,

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CERTIFICATE

This is to certdy thot the industrial troining report entitled "SAHYADRI FARM'S (Seeding Goodness)'

is being submitted herewith by name of the staff, Prof, Y. D. Kokate (Mechonicul),

Prof, L. B. Chintamani Mechanical), Prof, A. T. Sadgir (Mechanical), ProJ. S. V. Chakor (Electrical)

& Prof, S. M. Rakshit @ATq has successfully completed his irtdustriol truining

from l" August 2017 to l4tt' August 2017.

Place: Nashik Date

\y I,li't

(Mec han ical)

crpa

H.O.D(Electrical)

DTC)

I fector

7

(Prof. P. M. DeshPande)

)t

T.

&

Prin. T. A. Kulkarni Vidyanagar, Nashik-422OO5

b-ftr.o.o

(

(Dr. P. C. Kulkarni)

114 / 141

About Company:

Sahyadri farm's is a 100% farmer owned, professionally managed company based in Nashik,

Maharashtra. Sahyadri farm's is India's leading exporters and the largest grower-exporter

consortium of Grapes to Europe, Middle East, CIS & Asia. SF Agro have l00Gf committed

farmer members. Sahyadri farm's is BRC, FSSAI compliant with Global GAP certified farms.

. They follow Certified Good Agricultural Practices (GAP) right from Sowing to Harvest of all

fruits & vegetables. They handle more than 300MT/day of fresh produce.They process over

250MT/day of farm produce. Sahyadri farm's have 8 ripening chambers meeting intemational

standards to ensure "Carbide-free" supplies of Mango, Banana & Papaya.

Sahyadri farm's want you to eat 100% food safe farm produce coming directly from the

farmers. Sahyadri farm's want you to Know Your Farmer using their traceability system. They

want to be part ofthe changing food system of India. Sahyadri Farms is started in 201 1 with the

intention of ensuring a fair retum to the farmers and with the quality produces reaching to the

end users. Sahyadri was a movement, to uplift the farmers and to get them their righteous due.

Sahyadri Farms is a trusted, value driven and professionally managed Farmer Producer Company

(FPC) of the farmers, by the farmers, for the farmers.

On first day of training Mr.Rupesh Khiste, Head R&D and his team member Mr. Swapnil

Bagul, Training Coordinator and Mr. Sanjay Shelke, Maintenance Manger interact with us &

gives very warm welcome & then discussion started, at the end of discussion following queries

comes from their side.

1. Existing plant has a PLC and SCADA setup, so can we implement same setup for ongoing new

plant.

2. Energy audit and power management

3. Thermal efliciency ofchilling plant

4. Study ofETP (Effluent treatment Plant) plant.

Capacity ofthe Plant:

. Cold Storage for fast moving products: 2000MT

. Cold Storage for frozen products: 2000MT

. 6 Pre-Cooling Chambers: 300MT

. 8 Ripening Chambers: 200MT

. Fresh Fruits & Vegetables Packing Facility: 300MT/day

3

115 / 141

Gokhale Education Society'sR H Sapat College of Engineering & Management Studies and Research

Department of Mechanical EngineeringOffice Order

Dale - 27.11.2016

The following faculty members are deputed to supervise a group of students (TE Mechanical) duringiDdustrial traitrirg from 01.12.2016 to 21.12.2016.

s

' - -/ts'?

Name of Staff Irdustry No ofStudents

Mr. M. K. Ghode 5

Mr. P. V. Takekar Sai Krupa Auto Comp, MIDC Ambad, Nasik 6

MT.MBN Fanisam Sai Samarth Industries, H42 MIDC Ambad, Nasik. 5

Mr. L. B. Chintamani Avdhoot Heat Treatments, W I l6 MIDC Ambad, Nasik 6

Mr. Y. D. Kokate Sharda Motors Plt Ltd, MIDC Satpur, Nasik 6

Mr. A. K. Salve Nasik Transformer Industries, MIDC Ambad, Nasik 6

Mr. V. T. Mandlik Pinnacle Engplast Plt Ltd, MIDC Satpur, Nasik 4

Mr. C. K. Bhosale SMP Industries L2l MIDC Ambad, Ambad Nashik 5

Neha Enterprises, Ojhar, Nasik6

Mr. V C Kale Bharat Polymer & Extrusions, MIDC Satpur Nasik 6

s'

Technoflow, MIDC Ambad, Nasik

Mr.B. V. Varade

116 / 141

Mr. D. S. Chaudhari Bosch Ltd, 75 MIDC Satpur, Nasik. 4

Dr K V Chandratre suyash MetaTech Pfi Ltd, MIDC Satpur, Nasik 5

Mr. S. H. Sonawane Unique Treatments, E38 MIDC Ambad Nasik. 6

Mr.R. A. Tarle Pragati Udyog, MIDC Satpur, Nasik 5

Mr. S. V. Dawange Larmi Engineers, Nashik6

H.Y. Technocraft, 6

Mr. R. S. Pawar Laxmi Industries, MIDC Ambad, Nasik 5

Mrs S. P. Deshpande Nirmiti Precision, MIDC Satpur, Nasik4

Mr. G. D. Thike Leena Grears & Engg, MIDC Satpur, Nasik 4

Mrs. P. R. Thorat Pratik Industries, Wl0 MIDC Satpur, Nasik 6

Total 106

Copy - Establishm€nt D€ptt:

R.HS

Dr. S. N. Shelke

117 / 141

Gokhale Education Society's

R. H. Sapat College of Engineering, Management Studies &Research, Nasik-422005

Office Order

Date - 2,1.11.2015

The followirg faculty members of Mechanical Engitreerirg Department are deputed to supervisea group ofstudents (TE Mechanical) attending industrial trainitrg from 30.11.2015 to 20.12.2015.

Name ofStaff Industrv

Mr. A P Patil Allied Industries, F-36 MIDC

Mr. P. V. Takekar Sai Krupa Auto Comp, MIDC Ambad, Nasik '7

Mr. MBN Fanisam Sai Samarth Industries, H42 MIDC Ambad, Nasik. 7

Mr. L. B. ChintamaniAvdhoot Heat Treatments, W I l6 MIDC Ambad,

Nasik

Mr. Y. D. Kokate Sharda Motors P!.t Ltd, MIDC Satpur, Nasik

Nasik Transformer Industries, MIDC Ambad,Nasik 6

Mr. V. T. Mandlik Pinnacle Engplast Pvt Ltd, MIDC Satpur, Nasik 7

Mr. C. K. Bhosale Sai Samarth lndustries, MIDC Ambad, Nasik 7

Mr. B. V. Varade Bhalat Polymer Extrusions, A30/l MIDC,SatpurNashik.

6

Dr. V. D. Wakchaure 7

Mr. D. S. Chaudhari 6

RH$\

t.

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It

:..-l r-!t-- tE

No ofStudetrts

8

7

7

Mr. A. K. Salve

Apurva Industries, MIDC Malegoan, Sinnar, Nasik

Bosch Ltd, 75 MIDC Satpur, Nasik.

118 / 141

Mr. R. M. Dabhad€J & M Technosystem P\,r Ltd H 142 MIDC Ambad

Nasik6

Mr. S. H. Sonawane 6

Mr. R. A. Tarle SM Auto Stamping, MIDC Satpur Nasik 7

Mr. S. V. Dawange Pmtik Industries W10 MIDC Satpur Nashik8

Mr. M BN Fanisam Indo Pump P\t Ltd, MIDC Ambad, Nasik 8

Mr. R. S. Pawar Rajshree Hose P!.t Ltd

Mrs S. P. Deshpande Akshay Udyog G 59, In front ofTechnofab Ambad7

Mr. G. D. Thike Leena Grears & Engg, MIDC Satpur, Nasik 8

Mrs P. R. Thorat Astra Laser Tech Pvt Ltd, G - 56,MIDC, Ambad. 7

Total 140

t'

^\^^

Copy -Establishment Dept.

2

Aydhoot Heat Treatments Pvt Ltd, MIDC Ambad,Nasik

8

119 / 141

R H Sapat College of Engineering & Management Studies and Research

Department of Mechanical Engineering

D8r€ - 2E.05.201E

The following is the list of faculty members deputed to supervise a group of students (TE Mechanical) goiog

for industrial training from 01.06.201E to 21.06,2018.

Tbe faculties should collect th€ trames of the studeDts from respective class coordinators.

Name of Staffaccompanied with student

(Prof/ Mr)Industry Alloted

No ofStudents

M. K. GhodeJ. K. Engineering P!4 Ltd,

H42, MIDC, Satpur,Nashik.

7

P. V. TakekarSwastik Powder Coating,

MIDC, Satpur,Nasik.

8

Shree Ganesh Engineering,W-50/B, MIDC, Ambad,

Nashik7

L. B. ChintamaniGraphite India Ltd, Plot No 86 MIDC

Satpur, Nashik7

Y. D. KokateSatyam Engineering, Plot No. E35 MIDC,

Ambad, Nashik.8

A. K. SalveSidha Tech Industries,Wl7l, MIDC Ambad,

Nashik and MP Engineering7

V. T. Mandlik Sharda Motors Industries Pfi. Ltd,52 D, Behind CEAT, MIDC Satpur,Nashik

7

C. K. Bhosale 7

t

Departmental Notice

MBN Fanisam

Omkar Tools P!.t. Ltd., F-133, MIDCAmbad, Nashik.

'l.oi'

\

120 / 141

B. V. VaradeLaxmi Engineers,

W.l4E, MIDC Amba4Nashik

V C Kalekena Gears & Engineers,Plot No.28, D-6, MIDC,

Satpur Nasik1

B. V. VaradeLaxmi Engineers,

W-148, MIDC Ambad,Nashik

7

D. S. ChaudhariGabriel India Ltd,

B-2, MIDC Ambad,Nashik.

'7

Dr P. B. NehePratik Industries,

llr'l0 MIDC Satpur,Nashik.

8

L R KokateSamarth Engineering, K-12 MIDC Ambad,

Nashik.6

R. A. TarlePS Machine Tools, W68/A Near Shirke

Electro, MIDC Ambad, Nashik7

A T SadgirMac Power,

C-167, MIDC, Malegaon, Sinnar, Nashik7

Dr S R TareSuyash Metatech P!1. Ltd.

E 63 MIDC Satpur,Nashik.

7

R. S. PawarOkay Tools Pvt Ltd, Plot E-16 & E-28,

Ambad, Nashik 7

128Total Students

pcl

Mech Engg Deptt

Copy - Establishnrent Dcptt, (To allot duty leave to the above listed members from 1.6.18 to 21.6,18)

<,

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".$.

7

/4r,o--- Head

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