Vision
Mission
Programme Educational Objectives (PEOs)
Programme Outcomes (POs)
Programme Specific Outcomes (PSOs)
Mapping of PEOs with Mission
Course Outcomes
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 |
|
||
|
Course Title: |
Automation In Manufacturing |
Course Code: |
102605P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Critically |
||
|
CO2 |
Design, |
||
|
CO3 |
Demonstrate |
||
|
CO4 |
Perform |
||
|
CO5 |
Simulate, |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Composite Materials |
Course Code: |
102609 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the classification, properties, and applications of |
||
|
CO2 |
Apply micromechanics and anisotropic elasticity concepts to |
||
|
CO3 |
Describe manufacturing processes of composite materials and select |
||
|
CO4 |
Analyze stress–strain behavior and predict failure of laminated |
||
|
CO5 |
Analyze bending, buckling, and vibration behavior of laminated |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Power Plant Engineering |
Course Code: |
102610 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the working, components, and |
||
|
CO2 |
Analyze gas turbine and combined cycle power |
||
|
CO3 |
Describe nuclear power plants, reactor types, |
||
|
CO4 |
Explain the working and performance of |
||
|
CO5 |
Analyze energy economics, environmental |
||
|
Semester No: 6th |
|
||
|
Course Title: |
Renewable Energy Systems |
Course Code: |
102611 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the concepts |
||
|
CO2 |
Analyze solar |
||
|
CO3 |
Apply photovoltaic |
||
|
CO4 |
Analyse the hydropower |
||
|
CO5 |
Explain biomass and |
||
|
Semester No: 7th |
|
||
|
Course Title: |
Internal Combustion |
Course Code: |
102701 |
|
Course Outcome No. |
Course Outcome |
||
|
CO1 |
Explain the terminology, components, |
||
|
CO2 |
Apply engine performance testing methods to |
||
|
CO3 |
Analyse combustion processes in SI and CI |
||
|
CO4 |
Apply knowledge of fuel supply, ignition, |
||
|
CO5 |
Analyse IC engine testing data to evaluate |
||
|
Semester No: 7th |
|
||
|
Course Title: |
Internal Combustion |
Course Code: |
102701P |
|
Course Outcome No. |
Course Outcome |
||
|
CO1 |
Explain the terminology, components, |
||
|
CO2 |
Apply engine performance testing methods to |
||
|
CO3 |
Analyze combustion processes in SI and CI |
||
|
CO4 |
Apply knowledge of fuel supply, ignition, |
||
|
CO5 |
Analyze IC engine testing data to evaluate |
||
|
Semester No: 7th |
|
||
|
Course Title: |
Refrigeration And Air |
Course Code: |
102702 |
|
Course Outcome No. |
Course Outcome |
||
|
CO1 |
Explain the principles, working cycles, and applications of |
||
|
CO2 |
Analyze the performance of vapour compression and vapour |
||
|
CO3 |
Identify, classify, and compare special refrigeration techniques |
||
|
CO4 |
Implement psychrometric principles and chart analysis to evaluate |
||
|
CO5 |
Explain enthalpy potential and analyze the working and performance |
||
|
Semester No: 7th |
|
||
|
Course Title: |
Automobile |
Course Code: |
102705 |
|
Course Outcome No. |
Course Outcome |
||
|
CO1 |
Explain the construction, layout, and working principles of |
||
|
CO2 |
Analyze engine auxiliary systems and emission control systems. |
||
|
CO3 |
Illustrate transmission systems, clutches, gearboxes, and drive |
||
|
CO4 |
Describe steering, suspension, axles, and braking systems for |
||
|
CO5 |
Evaluate alternative fuels |
||
|
Semester No: 7th |
|
||
|
Course Title: |
Operations Research |
Course Code: |
102706 |
|
Course Outcome No. |
Course Outcome |
||
|
CO1 |
Explain the fundamentals, methodology, scope, and applications of |
||
|
CO2 |
Formulate and solve inventory and linear programming problems |
||
|
CO3 |
Solve transportation, assignment, and sequencing problems using |
||
|
CO4 |
Apply network models such as PERT and CPM for project planning, |
||
|
CO5 |
Analyze complex systems using dynamic programming, simulation, |
||
|
Semester No: 7th |
|
||
|
Course Title: |
Summer |
Course Code: |
100702P |
|
Course Outcome No. |
Course Outcome |
||
|
CO1 |
To provide industrial exposure to student to apply theoretical |
||
|
CO2 |
To develop and refine oral and written communication skills |
||
|
CO3 |
To get exposure to team-work, leadership quality and the ability |
||
|
CO4 |
To identify and adhere to the ethical standards, legal |
||
|
Semester No: 7th |
|
||
|
Course Title: |
Project-I |
Course Code: |
100709P |
|
Course Outcome No. |
Course Outcome |
||
|
CO1 |
Identify and analyze a real-world engineering problem by reviewing |
||
|
CO2 |
Design and develop an engineering solution or system using |
||
|
CO3 |
Apply experimental, analytical, or computational methods to |
||
|
CO4 |
Develop and validate a functional model, prototype, or simulation |
||
|
CO5 |
Evaluate the technical, economic, environmental, and societal |
||
|
CO6 |
Prepare professional technical reports and deliver effective oral |
||
|
Semester No: 8th |
|
||
|
Course Title: |
Energy Conservation and Management |
Course Code: |
102804 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Interpret global and |
||
|
CO2 |
Assess electrical energy systems, including billing |
||
|
CO3 |
Evaluate the |
||
|
CO4 |
Analyse energy use and |
||
|
CO5 |
Perform energy audits and apply energy economics |
||
|
Semester No: 8th |
|
||
|
Course Title: |
Gas Dynamics and Jet Propulsion |
Course Code: |
102805 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Analyze the principles |
||
|
CO2 |
Analyze non-isentropic |
||
|
CO3 |
Apply the principles |
||
|
CO4 |
Explain the theory of |
||
|
Semester No: 8th |
|
||
|
Course Title: |
Safety Management |
Course Code: |
102807 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain modern safety |
||
|
CO2 |
Analyze safety management |
||
|
CO3 |
Identify and assess |
||
|
CO4 |
Examine hazards in construction and mechanical systems, |
||
|
CO5 |
Apply safe work practices, personal protective equipment (PPE), |
||
|
Semester No: 8th |
|
||
|
Course Title: |
Non-Conventional Manufacturing |
Course Code: |
102808 |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Explain the classification, principles, and comparative advantages |
||
|
CO2 |
Describe the working principles and applications of mechanical |
||
|
CO3 |
Explain thermal and chemical machining processes including EDM and |
||
|
CO4 |
Describe the principles, working, and applications of |
||
|
CO5 |
Explain high-energy forming processes and micro-manufacturing |
||
|
Semester No: 8th |
|
||
|
Course Title: |
Project-II |
Course Code: |
100801P |
|
Course Outcome No. |
Course Outcome Statement |
||
|
CO1 |
Identify and analyze a |
||
|
CO2 |
Design and develop an |
||
|
CO3 |
Apply experimental, |
||
|
CO4 |
Develop and validate a |
||
|
CO5 |
Evaluate the |
||
|
CO6 |
Prepare professional |
||