Vision
To strengthen the region through imparting superior quality technical education and research; which enables the fulfillment of industrial challenge and establish itself as a Centre of Excellence in the field of Mechanical Engineering.
Mission
- To build an academic environment of teaching and lifelong learning for students to make them competitive in context with advance technological, economical and ecological changes.
- To enable the students to enhance their technical skills and communications through research, innovation and consultancy projects.
- To share and explore the accomplishments through didactic, enlightenment, R &D programs with technical institution in India and abroad.
Programme Educational Objectives (PEOs)
|
PEO1. |
Graduates will be able to pursue successful professional career in Mechanical Engineering with sound technical and managerial capabilities to meet the needs of the society. |
|
PEO2. |
Graduates will have skills and knowledge to formulate, analyze and solve problems in mechanical engineering to meet challenges globally. |
|
PEO3. |
Graduates will have the readiness for continuous learning by pursuing higher education and research in the allied areas of science and technology.
|
Programme Outcomes (POs)
|
PO1 |
Engineering knowledge: An ability to apply the knowledge of mathematics, science, engineering fundamentals, and an engineering specialization to get the solution of the engineering problems. |
|
PO2 |
Problem analysis: Ability to Identify, formulates, review research literature, and analyze complex engineering problems. |
|
PO3 |
Design/development of solutions: Ability to design solutions for complex engineering problems by considering social, economical and environmental aspects. |
|
PO4 |
Conduct investigations of complex problems: Use research-based knowledge to design, conduct analyse experiments to get valid conclusion. |
|
PO5 |
Modern tool usage: ability to create, select, and apply appropriate techniques, and to model complex engineering activities with an understanding of the limitations. |
|
PO6 |
The engineer and society: Ability to apply knowledge by considering social health, safety, legal and cultural issues. |
|
PO7 |
Environment and sustainability: Understanding of the impact of the adopted engineering solutions in social and environmental contexts. |
|
PO8 |
Ethics: Understanding of the ethical issues of the Mechanical engineering and applying ethical principles in engineering practices. |
|
PO9 |
Individual and teamwork: Ability to work effectively as an individual or in team, as a member or as a leader. |
|
PO10 |
Communication: An ability to communicate clearly and effectively through different modes of communication. |
|
PO11 |
Project management and finance: Ability to handle project and to manage finance related issue |
|
PO12 |
Life-long learning: Recognize the need for, and have the preparation and ability to engage in independent and life-long learning. |
Programme Specific Outcomes (PSOs)
| PSO1 | Apply their understanding in the realm of Design, Production and thermal fluid sciences to solve engineering problems using latest technologies. |
| PSO2 | Students will be well equipped with industrial management skills and interdisciplinary technologies |
| PSO3 | Extend and implement innovative thinking on product design and development with the aid of modern tools. |
Mapping of PEOs with Mission
Correlation-
1: Low, 2: Medium, 3: High
|
PEO Statements |
M1 |
M2 |
M3 |
|
PEO1: – Graduates will be |
3 |
2 |
3 |
|
PEO2: – Graduates will have |
2 |
3 |
3 |
|
PEO3: – Graduates will have |
2 |
2 |
2 |
Justification of PEOs and Mission Statement of the Mechanical Department
|
Mission Department |
PEOs |
||
|
PEO1 |
PEO2 |
PEO3 |
|
|
M1 To build an academic environment lifelong learning for the context of ecological changes. |
Sound technical and |
Skills and knowledge |
Continuous learning by pursuing higher education and research in the allied areas of science and technology |
|
M2 To enable the and communications |
Sound technical and |
To formulate, analyze and solve problems in mechanical engineering to meet challenges globally |
By pursuing higher education and research in the allied areas of science and technology |
|
M3 To share and explore didactic, programs with institutions in India |
To pursue successful professional career in with sound technical and managerial capabilities to meet |
Skills and knowledge to formulate, analyze and solve problems in mechanical engineering to meet challenges globally |
By pursuing higher education and research in the allied areas of science and technology
|
Course Outcomes
|
Semester No: 1st |
|
||
|
Course Title: |
Engineering Graphics & Design |
Course Code: |
100102 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the principles of engineering graphics, drawing |
||
|
CO2 |
Apply the principles of orthographic projection to draw |
||
|
CO3 |
Analyse the projections and auxiliary views of regular solids |
||
|
CO4 |
Construct sectional views and develop the surfaces of right |
||
|
CO5 |
Apply isometric projection principles and CAD tools to generate |
||
|
Semester No: 1st |
|
||
|
Course Title: |
Engineering Graphics & Design |
Course Code: |
100102P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the principles of engineering graphics, drawing |
||
|
CO2 |
Apply the principles of orthographic projection to draw |
||
|
CO3 |
Analyze the projections and auxiliary views of regular solids |
||
|
CO4 |
Construct sectional views and develop the surfaces of right |
||
|
CO5 |
Apply isometric projection principles and CAD tools to generate |
||
|
Semester No: 1st |
|
||
|
Course Title: |
Basic Electrical Engineering |
Course Code: |
100101 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Recall fundamental concepts of Electrical |
||
|
CO2 |
Illustrate the basic principles and behaviour |
||
|
CO3 |
Explain the operating principle of |
||
|
CO4 |
Classify and compare different types of |
||
|
CO5 |
Classify various electrical measuring |
||
|
Semester No: 1st |
|
||
|
Course Title: |
Physics (Electromagnetism) |
Course Code: |
102101 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To Evaluate electric field and electrostatic potential for |
||
|
CO2 |
To |
||
|
CO3 |
To Analyze Faraday’s law in terms of emf produced by changing |
||
|
CO4 |
To evaluate the continuity equation for current densities; Apply |
||
|
CO5 |
To Evaluate the wave equation of an electromagnetic waves in |
||
|
Semester No: 1st |
|
||
|
Course Title: |
Mathematics – I (Calculus and Linear Algebra) |
Course Code: |
102102 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To comprehend the differentiability and |
||
|
CO2 |
To comprehend beta and gamma functions. |
||
|
CO3 |
To comprehend Rolle’s theorem and Mean |
||
|
CO4 |
To analyze Fourier series expansions of |
||
|
CO5 |
To apply rank of a matrix in |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
Chemistry |
Course Code: |
100203 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Apply the fundamental concepts of chemical |
||
|
CO2 |
Comprehend and apply the principles of various |
||
|
CO3 |
Demonstrate knowledge of intermolecular forces |
||
|
CO4 |
Apply and analyse the principles of properties |
||
|
CO5 |
Critical analysis of the fundamentals of |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
Chemistry |
Course Code: |
100203P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Analytical & Water Chemistry Perform |
||
|
CO2 |
Physical & Surface Phenomena Determine the |
||
|
CO3 |
Instrumental & Kinetic Studies Apply |
||
|
CO4 |
Molecular Synthesis & Structural Design |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
Programming For Problem Solving
|
Course Code: |
100204 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
TO |
||
|
CO2 |
TO |
||
|
CO3 |
TO |
||
|
CO4 |
TO |
||
|
CO5 |
TO |
||
|
CO6 |
TO |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
Programming For Problem Solving
|
Course Code: |
100204P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
TO |
||
|
CO2 |
TO TRANSLATE GIVEN |
||
|
CO3 |
TO BE ABLE TO IDENTIFY |
||
|
CO4 |
TO BE ABLE TO WRITE |
||
|
CO5 |
TO BE ABLE TO |
||
|
CO6 |
TO BE ABLE TO DECLARE |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
Workshop Manufacturing Practices |
Course Code: |
100205 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain various |
||
|
CO2 |
Demonstrate basic |
||
|
CO3 |
Perform fitting |
||
|
CO4 |
Execute basic plastic |
||
|
CO5 |
Apply workshop |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
Workshop Manufacturing Practices |
Course Code: |
100205P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Demonstrate safe operation and basic machining skills in the |
||
|
CO2 |
Perform carpentry operations such as measuring, marking, |
||
|
CO3 |
Execute arc welding and gas welding processes to produce sound |
||
|
CO4 |
Carry out casting and smithy operations to shape metal |
||
|
CO5 |
Fabricate simple components using plastic moulding, glass |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
English |
Course Code: |
100206 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To analyze |
||
|
CO2 |
To |
||
|
CO3 |
To develop |
||
|
CO4 |
To produce |
||
|
CO5 |
To analyze |
||
|
Semester No: 2nd |
|
||
|
Course Title: |
Mathematics – II (Ode & Complex Variables) |
Course Code: |
102202 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Able to evaluate multiple integrals and |
||
|
CO2 |
Able to comprehend the basic concept of an |
||
|
CO3 |
Able to Create Mathematical modeling of |
||
|
CO4 |
To comprehend the fundamental concepts of |
||
|
CO5 |
Able to analyse complex engineering |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Biology For Engineers |
Course Code: |
100301 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain fundamental |
||
|
CO2 |
Illustrate biological |
||
|
CO3 |
Apply principles of |
||
|
CO4 |
Analyze biological |
||
|
CO5 |
Evaluate applications |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Basic Electronics Engineering |
Course Code: |
100303 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Understand the |
||
|
CO2 |
Design an application using an Operational amplifier |
||
|
CO3 |
Understand the working of timing circuits and |
||
|
CO4 |
Apply flip flops and logic gates to build various digital |
||
|
CO5 |
Learn the basics of Electronic communication systems. |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Engineering Mechanics |
Course Code: |
100309 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Apply the principles of statics to analyze coplanar and |
||
|
CO2 |
Analyze structures such as trusses, frames, and machines using |
||
|
CO3 |
Evaluate frictional forces and apply the concepts of dry |
||
|
CO4 |
Apply the fundamentals of kinematics and kinetics to analyze |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Engineering Mechanics |
Course Code: |
100309P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Perform experiments related to force systems and equilibrium and |
||
|
CO2 |
Conduct experiments on friction, centroid, and moment of |
||
|
CO3 |
Apply experimental and analytical techniques to solve mechanics |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Mathematics-III (Pde, Probability and Statistics) |
Course Code: |
100312 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Able to comprehend the application of partial |
||
|
CO2 |
Abel to create mathematical modelling of |
||
|
CO3 |
Abel to apply probability theory to analyze |
||
|
CO4 |
Able to apply the concept of correlation, |
||
|
CO5 |
Able to describe and analyse curve fitting and |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Thermodynamics |
Course Code: |
102304 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain basic thermodynamic concepts such as system, properties, |
||
|
CO2 |
Apply the First Law of Thermodynamics to analyse closed systems |
||
|
CO3 |
Determine thermodynamic properties of pure substances, gases, and |
||
|
CO4 |
Analyse the performance of basic engineering devices using energy |
||
|
CO5 |
Analyse thermodynamic cycles, irreversibility, and psychrometric |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Internship |
Course Code: |
100399P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To apply theoretical knowledge and |
||
|
CO2 |
To develop and refine oral and written communication skills |
||
|
CO3 |
To get exposure to team-work, |
||
|
CO4 |
To identify and adhere to the ethical standards, legal |
||
|
Semester No: 3rd |
|
||
|
Course Title: |
Machine drawing |
Course Code: |
102302P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Interpret engineering |
||
|
CO2 |
Construct orthographic |
||
|
CO3 |
Prepare detailed and |
||
|
CO4 |
Develop working |
||
|
CO5 |
Create two-dimensional |
||
|
Semester No: 4th |
|
||
|
Course Title: |
Applied Thermodynamics |
Course Code: |
102401 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the properties of fuels and the basics |
||
|
CO2 |
Apply thermodynamic and chemical equilibrium |
||
|
CO3 |
Apply thermodynamic principles to evaluate gas |
||
|
CO4 |
Analyze compressible flow in nozzles and |
||
|
CO5 |
Analyze the performance of steam turbines and |
||
|
Semester No: 4th |
|
||
|
Course Title: |
Engineering Materials |
Course Code: |
102402 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To Analyze engineering |
||
|
CO2 |
To Analyze the binary |
||
|
CO3 |
Perform and evaluate |
||
|
CO4 |
To Apply the heat |
||
|
CO5 |
To Select specific |
||
|
Semester No: 4th |
|
||
|
Course Title: |
Fluid Mechanics |
Course Code: |
102403 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain |
||
|
CO2 |
Apply the |
||
|
CO3 |
Analyze |
||
|
CO4 |
Evaluate |
||
|
Semester No: 4th |
|
||
|
Course Title: |
Fluid Mechanics |
Course Code: |
102403P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Conduct experiments to determine fluid properties and flow |
||
|
CO2 |
Analyze experimental data related to flow measurement devices |
||
|
CO3 |
Evaluate the performance of hydraulic machines through |
||
|
Semester No: 4th |
|
||
|
Course Title: |
Instrumentation & Control |
Course Code: |
102404 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
|
||
|
CO2 |
|
||
|
CO3 |
|
||
|
CO4 |
|
||
|
CO5 |
|
||
|
Semester No: 4th |
|
||
|
Course Title: |
Strength Of Materials |
Course Code: |
102405 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To analyse the |
||
|
CO2 |
To construct Shear |
||
|
CO3 |
To compute the slope |
||
|
CO4 |
To examine the effects |
||
|
CO5 |
To evaluate the |
||
|
Semester No: 4th |
|
||
|
Course Title: |
Strength Of Materials |
Course Code: |
102405P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To understand the experimental procedure and Lab |
||
|
CO2 |
To determine elastic constants like Modulus of |
||
|
CO3 |
To compare the surface resistance of different |
||
|
CO4 |
To evaluate different mechanical properties like |
||
|
CO5 |
To verify the deflection profile of continuous |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Fluid Machinery |
Course Code: |
102501 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Apply Euler’s equation |
||
|
CO2 |
Perform preliminary |
||
|
CO3 |
Analyze the |
||
|
CO4 |
Evaluate the |
||
|
CO5 |
Design a comprehensive |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Fluid Machinery |
Course Code: |
102501P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Validate Euler’s |
||
|
CO2 |
Analyze the |
||
|
CO3 |
Evaluate the main |
||
|
CO4 |
Examine the |
||
|
CO5 |
Synthesize |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Heat Transfer |
Course Code: |
102502 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To explain the |
||
|
CO2 |
To apply analytical |
||
|
CO3 |
To analyse forced and |
||
|
CO4 |
To evaluate radiation |
||
|
CO5 |
To apply boiling, |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Heat Transfer |
Course Code: |
102502P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To Apply the |
||
|
CO2 |
To Analyze the |
||
|
CO3 |
To Evaluate convective |
||
|
CO4 |
To Determine radiative |
||
|
CO5 |
To Assess the |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Kinematics of Machine |
Course Code: |
102503 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To explain fundamental kinematic concepts, |
||
|
CO2 |
To apply kinematic principles to determine |
||
|
CO3 |
To apply friction and dynamics principles to |
||
|
CO4 |
To analyze spur gears and gear trains to |
||
|
CO5 |
To analyze balancing of rotating masses and the performance |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Manufacturing Processes |
Course Code: |
102504 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the principles, equipment, and defects associated with |
||
|
CO2 |
Apply concepts of plastic deformation, yield criteria, and hot and |
||
|
CO3 |
Analyse metal cutting mechanisms and machining processes by |
||
|
CO4 |
Describe and compare joining and additive manufacturing processes, |
||
|
CO5 |
Explain the working principles and applications of machine tools |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Manufacturing Processes |
Course Code: |
102504P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Perform metal casting operations including pattern making, mould |
||
|
CO2 |
Execute welding processes such as arc welding, gas welding, and |
||
|
CO3 |
Carry out sheet metal and press working operations such as |
||
|
CO4 |
Perform machining operations on conventional machine tools such as |
||
|
CO5 |
Analyze manufacturing process parameters, compare different |
||
|
Semester No: 5th |
|
||
|
Course Title: |
Summer Entrepreneurship – II |
Course Code: |
100510P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To provide industrial exposure to |
||
|
CO2 |
To develop and refine oral and written communication skills |
||
|
CO3 |
To get exposure to team-work, |
||
|
CO4 |
To identify and adhere to the ethical standards, legal |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Design Of Machine Elements |
Course Code: |
102601 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Learn and implement |
||
|
CO2 |
Investigate and design |
||
|
CO3 |
Determine stresses and |
||
|
CO4 |
Design friction |
||
|
CO5 |
Analyze and design key |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Design Of Machine Elements |
Course Code: |
102601P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Understand and apply |
||
|
CO2 |
Analyze stresses and
|
||
|
CO3 |
Design and prepare |
||
|
CO4 |
Conduct experiments on |
||
|
CO5 |
Use standard design |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Dynamics Of Machinery |
Course Code: |
102602 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
To apply principles of |
||
|
CO2 |
To apply |
||
|
CO3 |
To |
||
|
CO4 |
To analyze |
||
|
CO5 |
To analyze mechanical |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Dynamics Of Machinery |
Course Code: |
102602P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Identify and explain |
||
|
CO2 |
Analyze velocity |
||
|
CO3 |
Evaluate the |
||
|
CO4 |
Identify and analyze |
||
|
CO5 |
Conduct experiments on |
||
|
CO6 |
Evaluate dynamometer |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Manufacturing Technology |
Course Code: |
102603 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Design specialized tooling |
||
|
CO2 |
Apply principles of limits, |
||
|
CO3 |
Analyze surface integrity, |
||
|
CO4 |
Develop efficient process |
||
|
CO5 |
Evaluate the process |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Manufacturing Technology |
Course Code: |
102603P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Measure linear and angular dimensions of |
||
|
CO2 |
Analyze geometric alignments and surface |
||
|
CO3 |
Evaluate cutting tool forces in machining |
||
|
CO4 |
Determine screw thread and gear tooth parameters |
||
|
CO5 |
Assess surface integrity and part quality using |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Automation In Manufacturing |
Course Code: |
102605 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain |
||
|
CO2 |
Apply CAD |
||
|
CO3 |
Demonstrate |
||
|
CO4 |
Analyze |
||
|
CO5 |
Develop |
||
|
Semester No: 6th |
|
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Course Title: |
Automation In Manufacturing |
Course Code: |
102605P |
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Course Outcome No. |
Course Outcome Statement |
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CO1 |
Critically |
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CO2 |
Design, |
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CO3 |
Demonstrate |
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CO4 |
Perform |
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CO5 |
Simulate, |
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Semester No: 6th |
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Course Title: |
Composite Materials |
Course Code: |
102609 |
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Course Outcome No. |
Course Outcome Statement |
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CO1 |
Explain the classification, properties, and applications of |
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CO2 |
Apply micromechanics and anisotropic elasticity concepts to |
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CO3 |
Describe manufacturing processes of composite materials and select |
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CO4 |
Analyze stress–strain behavior and predict failure of laminated |
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CO5 |
Analyze bending, buckling, and vibration behavior of laminated |
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Semester No: 6th |
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Course Title: |
Power Plant Engineering |
Course Code: |
102610 |
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Course Outcome No. |
Course Outcome Statement |
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CO1 |
Explain the working, components, and |
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CO2 |
Analyze gas turbine and combined cycle power |
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CO3 |
Describe nuclear power plants, reactor types, |
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CO4 |
Explain the working and performance of |
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CO5 |
Analyze energy economics, environmental |
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Semester No: 6th |
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Course Title: |
Renewable Energy Systems |
Course Code: |
102611 |
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Course Outcome No. |
Course Outcome Statement |
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CO1 |
Explain the concepts |
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CO2 |
Analyze solar |
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CO3 |
Apply photovoltaic |
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CO4 |
Analyse the hydropower |
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CO5 |
Explain biomass and |
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Semester No: 7th |
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Course Title: |
Internal Combustion |
Course Code: |
102701 |
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Course Outcome No. |
Course Outcome |
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CO1 |
Explain the terminology, components, |
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CO2 |
Apply engine performance testing methods to |
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CO3 |
Analyse combustion processes in SI and CI |
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CO4 |
Apply knowledge of fuel supply, ignition, |
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CO5 |
Analyse IC engine testing data to evaluate |
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Semester No: 7th |
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Course Title: |
Internal Combustion |
Course Code: |
102701P |
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Course Outcome No. |
Course Outcome |
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CO1 |
Explain the terminology, components, |
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CO2 |
Apply engine performance testing methods to |
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CO3 |
Analyze combustion processes in SI and CI |
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CO4 |
Apply knowledge of fuel supply, ignition, |
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CO5 |
Analyze IC engine testing data to evaluate |
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Semester No: 7th |
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Course Title: |
Refrigeration And Air |
Course Code: |
102702 |
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Course Outcome No. |
Course Outcome |
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CO1 |
Explain the principles, working cycles, and applications of |
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CO2 |
Analyze the performance of vapour compression and vapour |
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CO3 |
Identify, classify, and compare special refrigeration techniques |
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CO4 |
Implement psychrometric principles and chart analysis to evaluate |
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CO5 |
Explain enthalpy potential and analyze the working and performance |
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Semester No: 7th |
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Course Title: |
Automobile |
Course Code: |
102705 |
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Course Outcome No. |
Course Outcome |
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CO1 |
Explain the construction, layout, and working principles of |
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CO2 |
Analyze engine auxiliary systems and emission control systems. |
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CO3 |
Illustrate transmission systems, clutches, gearboxes, and drive |
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CO4 |
Describe steering, suspension, axles, and braking systems for |
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CO5 |
Evaluate alternative fuels |
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Semester No: 7th |
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Course Title: |
Operations Research |
Course Code: |
102706 |
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Course Outcome No. |
Course Outcome |
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CO1 |
Explain the fundamentals, methodology, scope, and applications of |
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CO2 |
Formulate and solve inventory and linear programming problems |
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CO3 |
Solve transportation, assignment, and sequencing problems using |
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CO4 |
Apply network models such as PERT and CPM for project planning, |
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CO5 |
Analyze complex systems using dynamic programming, simulation, |
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Semester No: 7th |
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Course Title: |
Summer |
Course Code: |
100702P |
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Course Outcome No. |
Course Outcome |
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CO1 |
To provide industrial exposure to student to apply theoretical |
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CO2 |
To develop and refine oral and written communication skills |
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CO3 |
To get exposure to team-work, leadership quality and the ability |
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CO4 |
To identify and adhere to the ethical standards, legal |
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Semester No: 7th |
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Course Title: |
Project-I |
Course Code: |
100709P |
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Course Outcome No. |
Course Outcome |
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CO1 |
Identify and analyze a real-world engineering problem by reviewing |
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CO2 |
Design and develop an engineering solution or system using |
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CO3 |
Apply experimental, analytical, or computational methods to |
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CO4 |
Develop and validate a functional model, prototype, or simulation |
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CO5 |
Evaluate the technical, economic, environmental, and societal |
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CO6 |
Prepare professional technical reports and deliver effective oral |
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Semester No: 8th |
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Course Title: |
Energy Conservation and Management |
Course Code: |
102804 |
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Course Outcome No. |
Course Outcome Statement |
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CO1 |
Interpret global and |
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CO2 |
Assess electrical energy systems, including billing |
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CO3 |
Evaluate the |
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CO4 |
Analyse energy use and |
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CO5 |
Perform energy audits and apply energy economics |
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Semester No: 8th |
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Course Title: |
Gas Dynamics and Jet Propulsion |
Course Code: |
102805 |
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Course Outcome No. |
Course Outcome Statement |
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|
CO1 |
Analyze the principles |
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CO2 |
Analyze non-isentropic |
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CO3 |
Apply the principles |
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CO4 |
Explain the theory of |
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Semester No: 8th |
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Course Title: |
Safety Management |
Course Code: |
102807 |
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Course Outcome No. |
Course Outcome Statement |
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CO1 |
Explain modern safety |
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CO2 |
Analyze safety management |
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CO3 |
Identify and assess |
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CO4 |
Examine hazards in construction and mechanical systems, |
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CO5 |
Apply safe work practices, personal protective equipment (PPE), |
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Semester No: 8th |
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Course Title: |
Non-Conventional Manufacturing |
Course Code: |
102808 |
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Course Outcome No. |
Course Outcome Statement |
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|
CO1 |
Explain the classification, principles, and comparative advantages |
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CO2 |
Describe the working principles and applications of mechanical |
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CO3 |
Explain thermal and chemical machining processes including EDM and |
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CO4 |
Describe the principles, working, and applications of |
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CO5 |
Explain high-energy forming processes and micro-manufacturing |
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Semester No: 8th |
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Course Title: |
Project-II |
Course Code: |
100801P |
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Course Outcome No. |
Course Outcome Statement |
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|
CO1 |
Identify and analyze a |
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CO2 |
Design and develop an |
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|
CO3 |
Apply experimental, |
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CO4 |
Develop and validate a |
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|
CO5 |
Evaluate the |
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|
CO6 |
Prepare professional |
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