Syllabus B.tech

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<ul><li><p>B.Tech. Mechanical with Spz in Chemical Process Engineering [FFCS 2014-2015] Page 1 </p><p>Vellore 632 014, Tamil Nadu, India </p><p>SCHOOL OF MECHANICAL AND BUILDING SCIENCES </p><p>CURRICULUM </p><p>B.Tech. Mechanical with Specialization in Chemical Process Engineering </p><p>(FFCS 2014-2015 Onwards) </p><p>Breakup of Courses </p><p>Sl.No. Category Credits </p><p>1 University Core 33 </p><p>2 University Elective 6 </p><p>3 Programme Core 128 </p><p>4 Programme Elective 15 </p><p>Minimum Total Number of Credits 182 </p><p> Category-wise Breakup of Credits </p><p>Category Number of Credits Credit distribution </p><p>(%) Recommended </p><p>% </p><p>Engineering 118 67.8 64 </p><p>Humanities 8 4.6 8 </p><p>Management 9 5.2 8 </p><p>Sciences 39 22.4 20 </p><p>Sub Total 174 </p><p>University Elective 6 </p><p>Co/Extra-Curricular Activity </p><p>2 </p><p>Total 182 100 100 </p></li><li><p>B.Tech. Mechanical with Spz in Chemical Process Engineering [FFCS 2014-2015] Page 2 </p><p>B.Tech Mechanical with Specialization in Chemical Process Engineering </p><p> UNIVERSITY CORE </p><p>Course Code Course Title L T P C Category Version </p><p>Course Prerequisite </p><p>ENG101 English for Engineers I 2 0 2 3 Humanities 1.0 VIT EPT (or) ENG001 </p><p>ENG102 English for Engineers II 2 0 2 3 Humanities 1.0 ENG101 CHY101 Engineering Chemistry 3 0 2 4 Science 1.0 - CHY104 Environmental Studies 3 0 0 3 Science 1.0 - FRE101/ GER101/ JAP101/ CHI101 </p><p>Foreign Language (from a basket of courses) 2 0 0 2 Humanities 1.0 - </p><p>MAT114 Multivariable Calculus and Differential Equations </p><p>3 0 2 4 Science 1.0 - </p><p>ITE101 Problem Solving Using C 2 0 2 3 Engineering 1.0 - PHY101 Modern Physics 3 0 2 4 Science 1.0 - MGT301/ HUM121 </p><p>Ethics and Values 3 0 0 3 Management 1.0 - </p><p>MEE498 Comprehensive Examination - - - 2 Engineering 1.0 - MEE497 Co/Extra-Curricular Activity - - - 2 - 1 Total UC credits 33 </p><p>University Elective </p><p>Course L T P C </p><p>University Elective - I - - - 3 </p><p>University Elective - II - - - 3 </p><p> Total 6 </p><p>Programme Core </p><p>Course Code Course Title L T P C Category </p><p>Version Course Prerequisite </p><p>CHY102 Materials and Instrumental Techniques 3 0 2 4 Science 1.0 - </p><p>EEE101 Basic Electrical &amp; Electronics Engineering 3 0 2 4 Engineering 1.0 - </p><p>MAT104 Probability and Statistics 3 1 0 4 Science 1.1 MAT114 </p></li><li><p>B.Tech. Mechanical with Spz in Chemical Process Engineering [FFCS 2014-2015] Page 3 </p><p>MAT105 Differential and Difference Equations 3 1 0 4 Science 1.1 MAT114 </p><p>MAT201 Complex Variables and Partial Differential Equations 3 1 0 4 Science 1.0 MAT105 </p><p>PHY102 Material Science 3 0 2 4 Science 1.0 - </p><p>MEE107 Engineering Drawing 0 0 4 2 Engineering 1.1 - </p><p>MEE102 Workshop Practice 0 0 2 1 Engineering 1.1 - </p><p>MEE108 Engineering Drawing II 0 0 4 2 Engineering 1.0 MEE107 </p><p>MEE104 Workshop Practice II 0 0 2 1 Engineering 1.0 MEE102 </p><p>MEE204 Engineering Thermodynamics 2 1 0 3 Engineering 1.01 - </p><p>MEE210 Materials Science and Strength of Materials 3 0 0 3 Engineering 1.0 </p><p>CHY101 PHY102 </p><p>MEE211 Process Calculations 2 2 0 4 Engineering 1.0 </p><p>MEE212 Unit Processes in Organic Synthesis 3 0 2 4 Science 1.0 CHY102 </p><p>MEE237 Process Engineering Thermodynamics 2 1 0 3 Engineering 1.1 </p><p>MEE204 MEE211 MAT201 </p><p>MEE224 Chemical Technology 3 0 0 3 Engineering 1.0 - </p><p>MEE225 Momentum Transfer 2 1 2 4 Engineering 1.0 - </p><p>MEE226 Mechanical Operations 2 1 2 4 Engineering 1.0 MAT201 </p><p>MEE233 Heat Transfer 2 1 2 4 Engineering 1.0 MAT201 </p><p>MEE313 Computational Methods in Process Engineering 2 1 2 4 Engineering 1.0 MAT201 </p><p>MEE379 Chemical Reaction Engineering 2 1 0 3 Engineering 1.0 MEE237 </p><p> Management I ( from a basket of courses) 3 0 0 3 Management - - </p><p>MEE315 Process Instrumentation and Control 2 1 2 4 Engineering 1.0 </p><p>MAT201 MEE233 </p><p>MEE316 Mass Transfer 2 1 0 3 Engineering 1.0 MAT201 MEE225 </p><p>MEE317 Biochemical Engineering 3 0 0 3 Engineering 1.0 MEE225, MEE313 </p><p>MEE318 Equilibrium Staged Operations 2 1 2 4 Engineering 1.0 MEE316 </p><p>MEE373 Heterogeneous Reaction Engineering 2 1 2 4 Engineering 1.0 </p><p>MEE314/ MEE379, MAT201 </p></li><li><p>B.Tech. Mechanical with Spz in Chemical Process Engineering [FFCS 2014-2015] Page 4 </p><p>MEE319 Process Equipment Design 2 1 2 4 Engineering 1.0 MEE211, MEE233 </p><p>MEE320 Process Plant Economics 3 0 0 3 Management 1.0 - </p><p>MEE321 Design Project for Chemical Process Engineering 0 0 4 2 Engineering 1.0 </p><p>MEE237 / MEE238 </p><p>MEE402 Transport Phenomena 2 1 0 3 Engineering 1.0 MEE 313, MEE233 , MEE316 </p><p>MEE403 Modelling and Simulation in Process Engineering </p><p>2 1 2 4 Engineering 1.0 MEE211 MAT201 </p><p>MEE399 Industrial Internship - - - 2 Engineering 1.0 - </p><p>MEE499 Project Work - - - 20 Engineering 1.0 - </p><p> Total PC credits 128 </p><p>Programme Electives (Credits to be earned : 15) </p><p>Course Code Course Title L T P C Category </p><p>Version Prerequisite </p><p>ENG103 History of Indian Independence Movement 1 0 0 1 Humanities 1.0 - </p><p> Management II ( from a basket of courses) 3 0 0 3 Management - - </p><p>MEE404 Production and Operations Management 3 0 0 3 </p><p>Engineering Management 1 - </p><p>MEE230 Renewable Energy Sources 3 0 0 3 Engineering 1 - </p><p>MEE322 Fuels and Combustion 2 1 0 3 Engineering 1 MEE204 </p><p>MEE227 Safety and Hazard Analysis 2 1 0 3 Engineering 1 - </p><p>MEE374 Process Plant Utilities 3 0 0 3 Engineering 1 MEE319 </p><p>MEE323 Chemical Product Design 3 0 0 3 Engineering 1 MEE224 </p><p>MEE414 Chemical Process Integration 3 0 0 3 Engineering 1 MEE 319 </p><p>MEE409 Optimization of Chemical Processes 3 0 0 3 Engineering 1 - </p><p>MEE384 Petroleum Chemistry 3 0 0 3 Engineering 1 - </p><p>MEE385 Natural Gas Engineering 2 1 0 3 Engineering 1 - </p></li><li><p>B.Tech. Mechanical with Spz in Chemical Process Engineering [FFCS 2014-2015] Page 5 </p><p>MEE410 Petroleum Technology 3 0 0 3 Engineering 1 - </p><p>MEE376 Petrochemical Technology 3 0 0 3 Engineering 1 - </p><p>MEE412 Process Plant Simulation 2 0 2 3 Engineering 1 MEE319 </p><p>MEE324 Complex Fluids Engineering 3 0 0 3 Engineering 1 MEE237 </p><p>MEE405 Computational Fluid Dynamics 2 1 2 4 Engineering 1 MEE313,MEE233MEE316/MEE225 </p><p>MEE415 Multiphase Flow 3 0 0 3 Engineering 1 MEE225, MEE233 </p><p>MEE440 Chemical Modelling of the Atmosphere 3 0 0 3 Engineering 1 </p><p>MEE225/ MEE206 </p><p>MEE441 Linear systems theory with applications 3 0 0 3 Engineering 1 MAT201 </p><p>MEE406 Fermentation Technology 3 0 0 3 Engineering 1 MEE317 </p><p>MEE444 Food Process Engineering 3 0 0 3 Engineering 1 - </p><p>MEE378 Industrial Pollution Engineering 3 0 0 3 Engineering 1 MEE225, MEE226 </p><p>MEE408 Membrane Separations Technology 3 0 0 3 Engineering 1 - </p><p>MEE407 Fluidization Engineering 3 0 0 3 Engineering 1 MEE225 MEE233 </p><p>MEE411 Polymer Technology 3 0 0 3 Engineering 1 - </p><p>MEE377 Fertilizer Technology 3 0 0 3 Engineering 1 - </p><p>MEE413 Surfactant Technology 3 0 0 3 Engineering 1 MEE313 </p></li><li><p>SYLLABI </p><p>University Core </p><p>ENG101 English for Engineers - I L T P C 3 0 0 3 </p><p>Syllabus approved by the Board of studies under School of Humanities and passed in the Academic Council </p><p> ENG102 English for Engineers - II L T P C </p><p>3 0 0 3 Syllabus approved by the Board of studies under School of Humanities and passed in the Academic Council </p><p> CHY 101 Engineering chemistry L T P C </p><p>3 0 2 4 Syllabus approved by the Board of studies under School of Advanced Sciences and passed in the Academic Council </p><p> CHY 104 Environmental Studies LTPC: 3 0 0 3 Syllabus approved by the Board of studies under School of Advanced Sciences </p><p>FRE101/GER101/JAP101 Foreign Language L T P C 2 0 0 2 </p><p>Syllabus approved by the Board of studies under School of Humanities </p><p>MAT101 Multivariable Calculus and Differential Equations </p><p>L T P C 3 1 0 4 </p><p>Syllabus approved by the Board of Studies under School of Advanced Science </p><p>CSE101 Computer Programming and Problem Solving </p><p>L T P C 2 0 2 3 </p><p>Syllabus approved by the Board of studies under School of Computing Sciences and passed in the academic Council </p><p>PHY101 Modern Physics LTPC: 3 0 2 4 Syllabus approved by the Board of studies under School of Advanced Sciences </p><p>MGT301 Ethics and Values L T P C 3 0 0 3 </p><p>Syllabus approved by the Board of Studies under VIT Business School </p></li><li><p> Comprehensive Examination L T P C </p><p>0 0 0 2 Version No. 1.0.0 Course Prerequisites Completion of all program core engineering courses Objectives: To test the students understanding and application knowledge in process </p><p>engineering. Expected Outcome: The student will be able to solve process engineering problems in real </p><p>situations Text Book &amp; References As prescribed for the programme core courses. Mode of Evaluation Written Examination / viva voce Recommended by the Board of Studies on 13.11.2008 </p><p>Date of Approval by the Academic Council 25.11.2008 </p><p> University Electives (limited to 6 credits) </p><p> Elective I L T P C 2 1 0 3 </p><p>Syllabus approved by the Board of Studies under School of Computing Sciences/ School of Mechanical and Building Sciences/ School of Electrical Sciences in the Area of Engineering. </p><p> Elective II L T P C 2 1 0 3 </p><p>Syllabus approved by the Board of Studies under School of Computing Sciences/ School of Mechanical and Building Sciences/ School of Electrical Sciences in the Area of Engineering. </p></li><li><p>Programme Core </p><p>CHY102 Materials and Instrumental techniques LTPC: 3 0 2 4 Syllabus approved by the Board of studies under School of Advanced Sciences </p><p>EE101 Basic Electrical and Electronics Engineering LTPC: 3 0 2 4 Syllabus approved by the Board of studies under School of Electrical Sciences </p><p>MAT104 Probability and Statistics LTPC: 3 1 0 4 Syllabus approved by the Board of studies under School of Advanced Sciences Course Prerequisites MAT101 </p><p>MAT105 Differential and Difference equation LTPC: 3 1 0 4 Syllabus approved by the Board of studies under School of Advanced Sciences Course Prerequisites MAT101 </p><p>MAT201 Complex Variables and Partial Differential Equations </p><p>LTPC: 3 1 0 4 </p><p>Syllabus approved by the Board of studies under School of Advanced Sciences Course Prerequisites MAT105 </p><p>PHY102 Material Science LTPC: 3 0 2 4 Syllabus approved by the Board of studies under School of Advanced Sciences Course Prerequisites </p></li><li><p>MEE101 ENGINEERING GRAPHICS 0 0 4 2 Version No. 1.10 Prerequisite - Objectives: 1. To create awareness and emphasize the need for Engineering Graphics in </p><p>all the branches of engineering. 2. To follow basic drawing standards and conventions. 3. To develop skills in three-dimensional visualization of engineering </p><p>component. 4. To develop an understanding of 2D and 3D drawings using the SolidWorks </p><p>software. Expected Outcome: </p><p>On completion of this course, the students will be able to 1. Prepare drawings as per standards (BIS). 2. Solve specific geometrical problems in plane geometry involving lines, </p><p>plane figures and special Curves. 3. Produce orthographic projection of engineering components working from </p><p>pictorial drawings. 4. Prepare 2D Drawings using the SolidWorks software. </p><p>Unit I Introduction Introduction to Engineering Graphics Geometrical Construction Conics and Special Curves. Unit II Free Hand Sketching and Dimensioning Free hand Sketching Dimensioning Principles. Unit III Orthographic Projection Points and Lines Orthographic Projection Projection of Points and lines. Unit IV Orthographic Projection Solids Orthographic Projection Projection of solids in simple position, Axis Inclined to one plane. Unit V Orthographic Projection Objects Conversion of Pictorial view into Orthographic projections. Text Books 1. Venugopal K and Prabhu Raja V, Engineering Graphics, New AGE International Publishers, 2007. 2. CAD Manual prepared by VIT staff. References 1. Bhatt N. D., Engineering Drawing, Charotar publishing House, 1998. 2. French and Vierk, Fundamentals of Engineering Drawing, McGraw Hill, 2002. 3. Natarajan, K. V., Engineering Graphics, Dhanalakshmi Publishers, 2006. Mode of Evaluation Tutorials / Class Tests / Lab Exam Recommended by the Board of Studies on: 31.10.2009 Date of Approval by the Academic Council: 27.11.2009 </p></li><li><p> MEE102 WORKSHOP PRACTICE 0 0 2 1 Version No. 1.10 Prerequisite - Objectives: 1. To train the students in metal joining process like welding, soldering, etc. </p><p>2. To impart skill in fabricating simple components using sheet metal. 3. To cultivate safety aspects in handling of tools and equipment. </p><p>Expected Outcome: </p><p>On completion of this course, the students will be able to 1. Welding and soldering operations. 2. Fabrication of simple sheet metal parts. </p><p>Unit I Welding Shop 1. Instruction of BI standards and reading of welding drawings. 2. Butt Joint 3. Lap Joint 4. TIG Welding 5. MIG Welding Unit II Sheet Metal Shop 1. Making of Cube 2. Making of Cone using development of surface. 3. Making of control panel using development of surface. Unit III Soldering Shop 1. Soldering and desoldering of Resistor in PCB. 2. Soldering and desoldering of IC in PCB. 3. Soldering and desoldering of Capacitor in PCB. Unit IV Bosch Tools Demonstration of all BOSCH TOOLS Text Books Workshop Manual prepared by VIT staff Mode of Evaluation Tutorials / Class Tests / Lab Exam Recommended by the Board of Studies on: 31.10.2009 Date of Approval by the Academic Council: 27.11.2009 </p></li><li><p>MEE103 ENGINEERING GRAPHICS - II 0 0 4 2 Version No. 1.0 Prerequisite MEE101 Engineering Graphics Objectives: 1. To prepare sectional views of solids. </p><p>2. To draw the development of surfaces and estimate the sheet metal requirement. 3. To develop skills in three-dimensional visualization of engineering components. 4. To provide students with the basic knowledge and skills in producing Engineering Graphics and with the capability to read and interpret engineering drawings. 5. To develop an understanding of solid modelling using the SolidWorks software. </p><p>Expected Outcome: </p><p>On completion of this course, the students will be able to 1. Prepare sectional views of solids. 2. Estimate the sheet metal requirement for fabrication. 3. Draw isometric drawings of combined solids and simple components. 4. Prepare solid modelling of machine components using the Solidworks software. </p><p>Unit I Sections of solids Introduction to Sections of Solids. Unit II Development of Surfaces Development of Surfaces. Unit III Isometric Projection Isometric Projection and drawing. Unit IV Solid Modelling I Solid Modelling of Engineering Components using SolidWorks. Unit V Solid Modelling II Solid Modelling of Engineering Components using SolidWorks. Text Books 1. Venugopal K and Prabhu Raja V, Engineering Graphics, New AGE International Publishers, 2007. 2. CAD Manual prepared by VIT staff. References 1. Bhatt N. D., Engineering Drawing, Charotar Publishing House, 1998. 2. French and Vierk, Fundamentals of Engineering Drawing, McGraw Hill, 2002. 3. Natarajan, K. V., Engineering Graphics, Dhanalakshmi Publishers, 2006. Mode of Evaluation Tutorials / Class Tests / Lab Exam Recommended by the Board of Studies on: 23.5.2008 Date of Approval by the Academic Council: 16.6.2008 </p></li><li><p>B.Tech Mechanical with spz in Chemical Process Engineering Page 13 </p><p>MEE104 WORKSHOP PRACTICE - II 0 0 2 1 Version No. 1.0 Prerequisite MEE102 Workshop Practice Objectives: 1. To train the students in safety handling of tools, equipment and machineries....</p></li></ul>