Course Outcomes

SY B Tech Mechanical Sandwich (2025 pattern)

Sem I
Course Course Code Course Outcomes
Solid Mechanics 25MSPCC201 Explain the fundamental concepts of stress, strain, and mechanical properties of materials
Determine strain energy, impact stresses, and stresses in thin cylinders.
Calculate and analyse internal forces and moments in structural members using free-body diagrams
Compute the bending stresses and shear stresses on a beam.
Analyze torsional stresses in shafts and determine critical buckling load of columns for different end conditions.
Thermal & Fluid Engineering 25MEPCC202 Explain thermodynamic concepts, laws, and processes, and apply the first and second laws of thermodynamics to analyze simple closed and open systems, heat engines, refrigerators, and irreversibilities.
Explain entropy and availability concepts and evaluate entropy changes of closed and open systems, including ideal gas processes.
Analyze steam properties, use steam tables and Mollier charts, determine dryness fraction, and evaluate boiler performance through efficiency, equivalent evaporation, and heat balance calculations.
Explain fluid properties and static laws and apply Bernoulli’s equation to solve numerical problems involving manometers, viscosity, and Venturimeter.
Analyze laminar internal flow and external boundary layer flow, and solve numerical problems related to boundary layer thickness, displacement thickness, momentum thickness, and energy thickness.
Manufacturing Engineering 25MSPCC203 DESIGN gating systems, risers, and ANALYZE casting defects for efficient metal casting processes.
COMPUTE forces, power, and deformation in rolling, forging, and sheet metal operations.
Understand Basic Plastic component manufacturing Process and its applications
COMPARE welding techniques, interpret weld symbols, and EVALUATE defects for quality joining.
SELECT appropriate grinding and finishing processes based on surface finish requirements
Multidisciplinary Minor-I (Fundamentals of Artificial Intelligence and Machine Learning  ) 25AIMDM201D DEMONSTRATE fundamentals of artificial intelligence and machine learning.
APPLY feature extraction and selection techniques
APPLY machine learning algorithms for classification and regression problems
EXPLAIN concepts of unsupervised and reinforced learning.
ANALYZE the structure and learning mechanisms of artificial neural networks and interpret their applications in mechanical engineering systems.

Open Elective I (25OEC201A)

Principles of Management and Organizational Behaviour

 

25OEC201A Explain core management functions and classical as well as modern management theories.
 Analyze individual behaviour, personality, perception, and motivation in organizational settings.
Apply capital budgeting methods for evaluating engineering investment decisions.
 Evaluate cost of capital and capital structure decisions.
Apply working capital and financial planning concepts for engineering projects.

Open Elective I (25OEC201B)

Circular Economy for Sustainable Development

25OEC201B Explain the fundamental principles of circular economy and sustainable development, and differentiate between linear and circular economic systems.
Analyse global environmental challenges and evaluate the role of Sustainable Development Goals (SDGs) in addressing sustainability issues.
Apply life cycle thinking, material flow analysis, and resource efficiency tools to assess environmental impacts of products and processes
Design and evaluate circular business models incorporating strategies such as reuse, recycling, remanufacturing, and extended producer responsibility.
Assess sustainability policies, governance mechanisms, and technological interventions to propose practical solutions for sustainable development.

Open Elective I (25OEC201C)

Start-up Management &Venture Creation

25OEC201C Explain concepts, types, and lifecycle stages of start-ups and new ventures.
Identify and analyze start up opportunities using market and customer discovery tools.
Develop suitable business models and assess technical and financial feasibility of ventures.
Apply knowledge of funding, legal, IPR, and government policies for startup creation.
Prepare and present a startup business plan demonstrating teamwork, communication, ethics, and lifelong learning.

Open Elective I (25OEC201D)

Health and Nutrition for Professionals

25OEC201D Explain the basic concepts of health and nutrition.
Understand nutritional requirements and balanced diet.
Identify lifestyle diseases and preventive measures.
Apply principles of healthy living and stress management.
Analyze the role of nutrition in improving professional productivity

Open Elective I (25OEC201E)

French Language Module-I

25OEC201E Identify basic French vocabulary and pronunciation.
Use simple French expressions for self-introduction and basic interactions.
Read and write simple French sentences.
Communicate in familiar everyday situations using basic French.
Demonstrate awareness of French culture and etiquette.

Open Elective I (25OEC201F)

German Language Module-I

25OEC201F Identify basic German vocabulary and pronunciation.
Use simple German expressions for basic communication.
Read and write elementary German sentences.
Apply common German phrases in everyday situations.
Demonstrate awareness of German culture and traditions.

Open Elective I (25OEC201G)

Japanese Language Module-I

25OEC201G Identify basic Japanese pronunciation, scripts, and vocabulary.
Use simple Japanese expressions for basic communication.
Read and write basic Japanese characters and sentences.
Participate in elementary conversations using simple Japanese expressions.
Demonstrate awareness of Japanese culture and etiquette.
Solid Mechanics  Laboratory 25MSPCC201L Conduct tensile, compression, torsion, shear, and bending tests and interpret the stress–strain behavior of materials.
Determine mechanical properties such as Young’s modulus, shear modulus, yield strength, and spring stiffness from experimental data.
Apply IS and ASTM standards while performing material testing experiments.
Measure strain using strain gauges and compare experimental results with theoretical values.
Correlate laboratory results with real-life engineering components such as beams, shafts, columns, and springs.
Thermal & Fluid Engineering Laboratory 25MEPCC202L Explain and apply the principles of Joule’s experiment, heat transfer, and steam properties in thermal engineering applications.
Identify and use various temperature sensors, viscometers, calorimeters, and flow measurement devices used in thermal and fluid systems.
Evaluate boiler performance parameters such as boiler efficiency, equivalent evaporation, dryness fraction, and heat balance.
Analyze fluid flow systems by determining major and minor losses in pipelines and verifying modified Bernoulli’s equation.
Correlate laboratory experiments with industrial practices in boilers, food processing plants, and automobile service stations, enhancing professional and practical competence
Intelligent Mechanical Systems Laboratory 25MEPCC203L Acquire and analyze engineering datasets using exploratory analysis techniques
Extract and select relevant features from engineering datasets to form effective training data for machine learning models.
Develop and evaluate classification and regression models for solving mechanical engineering problems.
Apply reinforcement learning and evolutionary optimization concepts to engineering system optimization
Apply artificial neural networks for parameter estimation, system identification, and tuning of control algorithms in mechanical engineering applications.
Workshop practices 25MEVSE201 IDENTIFY and ANALYZE safety standards and safety measures applicable to various sections of mechanical workshops and effectively communicate these through the preparation of informative posters or reports.
READ, INTERPRET Casting Process and its stages.
READ, INTERPRET, and ANALYZE industrial drawings by applying standard industrial practices to effectively communicate design and manufacturing intent.
UNDERSTAND and APPLY the principles of GD&T as well as INTERPRET surface finish and welding symbols to enhance design accuracy and manufacturability.
PLAN and EXECUTE the production of an assembly job by performing a sequence of machining operations while selecting appropriate materials and processes to meet functional and assembly requirements.
 Entrepreneurship/Economics/ Management Course-I 25HSM201 Explain the fundamental concepts of entrepreneurship, economics, and management, and their role in industrial and business development.
Apply principles of economics and management to analyse business environments, resource utilisation, and organisational decision-making.
Analyse entrepreneurial opportunities by conducting market surveys, feasibility studies, and SWOT analysis for new business ventures.
Prepare a basic business plan incorporating marketing, finance, production, human resources, and legal aspects for a startup or small enterprise.
Demonstrate entrepreneurial competencies, ethical business practices, leadership, innovation, and effective communication for sustainable enterprise development.
Universal Human Values 25VEC201 Explain the concept of human values and self-exploration, and recognize their importance in personal life, professional life, and the role of engineers in society.
Understand the importance of sustainable development, environmental responsibility, and ecological balance, and evaluate the impact of technology on society and nature.
Apply values such as trust, respect, empathy, and responsibility to maintain harmony in family and society and practice ethical behavior in social interactions.
Demonstrate professional ethics, value-based decision making, leadership, and teamwork in engineering practice for the welfare of society.
Understand the relationship between self and body, differentiate their needs, and develop self-awareness and balanced lifestyle practices for personal well-being.
Community Engagement Project 25ELC201 Identify and analyze societal and community-based problems using systematic approaches.
Apply appropriate engineering or technological solutions to address community needs.
Demonstrate ethical behaviour, inclusiveness, and sustainability in community interventions.
Work effectively in multidisciplinary teams and communicate outcomes to stakeholders.
Reflect on learning experiences to develop self-learning and lifelong learning capabilities.
Sem II
Course Course Code Course Outcomes
Mathematical Foundation for Mechanical Engineering 25MEPCC204 SOLVE higher order linear differential equations and its applications to model and analyze mass spring systems.
APPLY Integral transform techniques such as Laplace transform and Fourier transform to solve differential equations involved in vibration theory, heat transfer and related mechanical engineering applications.
APPLY Statistical methods like correlation, regression in analyzing and interpreting experimental data applicable to reliability engineering.
APPLY Probability theory in testing and quality control.
PERFORM Vector differentiation & integration, ANALYZE the vector fields and APPLY to fluid flow problems.
IC Engines & Electric Vehicles 25MEPCC205 Explain the fundamentals of IC engines, engine components, valve timing, intake and exhaust systems, and analyze air-standard, fuel-air, and actual cycles.
Describe combustion in SI & CI engines, fuel injection systems, knocking, and alternative fuels
Analyze engine performance parameters, testing methods, emission formation, and control technologies
Explain engine subsystems and discuss recent trends such as EMS, HCCI, AI-based diagnostics
Explain EV architecture, motors, batteries, power electronics, charging systems, and safety
Engineering Materials and Metallurgy 25MEPCC206 Explain crystal structures, imperfections, and diffusion mechanisms in materials
Apply phase diagrams to analyze alloy behaviour and transformations
Evaluate mechanical properties using destructive and non-destructive testing methods
Understand heat treatment processes and their effects on microstructure and properties
Analyze and apply appropriate engineering materials for specific applications
Multidisciplinary Minor-II (Artificial Intellgence in Quality Control) 25AIMDM202D To understand the fundamentals of metrology and measurement system.
Apply statistical quality control tools such as control charts and process capability indices for  process monitoring.
Analyze measurement and quality data using AI tools.
Apply machine learning models for error prediction and correction.
Implement AI-based solutions in smart manufacturing environments.

Open Elective II (25OEC202A)

Leadership and Team Dynamics

(25OEC202A) Explain leadership theories, organizational behaviour, and group dynamics concepts.
Apply communication and interpersonal skills in team environments.
Analyze leadership styles, group processes, and motivational approaches.
Evaluate team effectiveness, conflict management, ethics, and leadership challenges.
Develop leadership strategies for professional and global organizational  environments.

Open Elective II (25OEC202B)

Green Practices & ESG Frameworks

(25OEC202B) Explain the concepts of sustainability, green practices, and ESG frameworks.
Analyse environmental impacts and adopt green technologies for sustainable development.
Evaluate social responsibility and stakeholder engagement practices in organizations.
Understand governance principles, ethical leadership, and regulatory frameworks.
Apply ESG reporting standards and sustainability assessment methods in industries.

Open Elective II (25OEC202C)

Innovation and Business Strategy

(25OEC202C) Explain concepts of innovation, creativity, and business strategy.

Apply innovation management and strategic thinking tools for business problem-solving.

Analyze business models, technology innovation, and entrepreneurial strategies.

Evaluate sustainability, intellectual property, and innovation management practices.
Develop innovative business solutions and strategic growth approaches.

Open Elective II (25OEC202D)

Stress Management and Mental Well Being

(25OEC202D) Explain the concepts of stress, mental health, and wellbeing
Identify sources of stress and analyse their impact
Apply stress management techniques
Demonstrate emotional intelligence and coping strategies
Design a personal wellbeing and stress management plan

Open Elective II (25OEC202E)

French Language Module-II

(25OEC202E) Use basic French expressions confidently.
Understand simple dialogues and instructions.
Read and write short paragraphs.
Participate in guided conversations.
Apply French in practical situations.

Open Elective II (25OEC202F)

French Language Module-II

(25OEC202F) Use beginner-level German expressions confidently.
Understand simple dialogues and instructions.
Read and write short passages.
Participate in practical conversations.
Apply German in everyday situations.

Open Elective II (25OEC202G)

Japanese Language Module-II

(25OEC202G) Communicate using beginner-level Japanese expressions.
Understand short dialogues and passages.
Read and write basic Japanese sentences
Participate in practical conversations.
Apply Japanese in everyday situations.
Metrology & Quality Control Laboratory 25MEPCC204L Identify various linear, angular, and surface measurement instruments and explain their working principles.
Demonstrate the use of precision instruments like micrometer, venire calipers, dial gauge, sine bar, slip gauges, and profile projector for dimensional inspection.
 Perform calibration of instruments and machines to ensure accuracy and repeatability in measurements.
Apply statistical quality control tools (e.g., control charts, histograms, Cp/Cpk) for process evaluation.
Analyze measurement data, identify deviations, and suggest quality improvement strategies based on inspection outcomes.
IC Engines Laboratory 25MEPCC205L Conduct IC engine experiments to determine friction power, performance parameters, and thermal efficiencies using standard testing methods.
Prepare and analyze the heat balance sheet of an IC engine and evaluate various heat losses under different load conditions.
Identify and explain the construction and working of IC engine subsystems, including fuel injection, ignition, cooling, and lubrication systems.
Measure and interpret exhaust emissions (CO, HC, NOx, CO₂) and smoke density, and relate results to engine operating conditions and emission norms.
Explain the basic architecture and powertrain components of electric vehicles and relate laboratory knowledge to real-world automotive practices through industry exposure.
Material & Metallurgical Testing Laboratory 25MEPCC206L Apply appropriate destructive testing methods to evaluate hardness and impact strength of engineering materials.
Perform and interpret results of non-destructive testing techniques for defect detection in materials.
Prepare metallographic specimens and analyze microstructures of steels, cast irons, and non-ferrous metals
Correlate heat treatment processes with changes in microstructure and hardness of steels.
Demonstrate understanding of industrial material testing practices through industrial visits and technical reporting.
Solid Modeling & Drafting Laboratory 25MEVSE202 Demonstrate proficiency in Creo Parametric for sketching, part modeling, and assembly creation.
Create parametric and advanced machine components with accurate mass properties and material assignment.
Design sheet metal components and generate flat patterns for production.
Simulate mechanisms and motions, and perform basic structural, thermal, and modal analyses.
Prepare professional engineering drawings for parts and assemblies, including tolerances, GD&T, and BOMs.
Modern Indian Language 25AEC201A मराठी भाषेतील प्रगत भाषिक कौशल्यांचा प्रभावीपणे वापर करून संवाद साधू शकतील.
प्रसारमाध्यमांतील संज्ञापनाचे विविध प्रकार, स्वरूप व समाजातील त्यांचे स्थान स्पष्ट करू शकतील.
व्यक्तिमत्त्व विकासामध्ये भाषेचे महत्त्व ओळखून प्रभावी संवादकौशल्य विकसित करू शकतील.
लोकशाहीतील जीवनव्यवहार आणि प्रसारमाध्यमे यांतील परस्परसंबंधांचे विश्लेषण करू शकतील.
प्रसारमाध्यमांसाठी विविध प्रकारचे लेखन कौशल्य आत्मसात करून प्रभावी लेखन करू शकतील.
Modern Indian Language (Sanskrit) 25AEC201B Understand the basic structure, phonetics, and grammar of the sanskrit language.
Construct simple Sanskrit sentences using basic grammatical rules.
Interpret selected Sanskrit verses related to science, mathematics, and philosophy.
Recognize the contributions of ancient Indian scholars to science and engineering.
Appreciate the relevance of Sanskrit in modern fields such as computational linguistics, knowledge
Entrepreneurship/Economics/ Management Course-II 25HSM202 Explain the fundamental concepts of entrepreneurship, economics, and management, and their role in industrial and business development.
Apply principles of economics and management to analyse business environments, resource utilisation, and organisational decision-making.
Analyse entrepreneurial opportunities by conducting market surveys, feasibility studies, and SWOT analysis for new business ventures.
Prepare a basic business plan incorporating marketing, finance, production, human resources, and legal aspects for a startup or small enterprise.
Demonstrate entrepreneurial competencies, ethical business practices, leadership, innovation, and effective communication for sustainable enterprise development.

Value Education Course

(Indian Constitution and Governance)

 

 

25VEC202

Explain the historical background, features, and structure of the Indian Constitution.
Describe Fundamental Rights, Directive Principles, and Fundamental Duties and their significance
Apply constitutional provisions to analyze the functioning of Union and State governments.
Analyze the role of constitutional and statutory bodies in Indian governance
Evaluate contemporary governance issues with reference to constitutional values and ethics.

T.E Mechanical Sandwich (2024 pattern)

Sem I
Course Course Code Course Outcomes
Heat & Mass Transfer PCC301-MSW Explain fundamental heat transfer mechanisms and analyze heat conduction in engineering systems.
Analyze fins, insulation systems, and transient heat conduction problems.
Apply convection heat transfer principles and empirical correlations to determine heat transfer rates.
Analyze radiation heat exchange between surfaces and thermal systems.
Evaluate the performance of heat exchangers using LMTD and NTU methods
Kinematics of Machinery PCC302-MSW APPLY kinematic concepts to analyze mechanisms used in engineering applications
ANALYZE displacement, velocity, and acceleration of mechanisms using analytical and graphical methods.
DESIGN and SYNTHESIZE mechanisms for specified motion and path generation problems
ANALYZE gear systems and APPLY kinematic principles in power transmission applications
DESIGN cam profiles for required follower motion considering practical constraints
Machine Design PCC303-MSW DESIGN levers and components subjected to eccentric loading by selecting appropriate material.
DESIGN shafts, keys and couplings under different loading conditions.
EVALUATE the stresses developed in the different type of welded and threaded joints.
APPLY the design procedure for different types of springs and EVALUATE dimensions of machine components under fluctuating loads.
ANALYZE different stresses developed in power screws and APPLY those in the procedure to design screw jack.
Manufacturing Engineering-II PCC304-MSW DEFINE metal cutting principles and mechanics of metal cutting and tool life.
DESCRIBE features of gear and thread manufacturing processes.
SELECT appropriate grinding wheel and demonstrate the various surface finishing processes.
GENERATE CNC program for Turning / Milling processes and generate tool path using CAM software.
SELECT appropriate jigs/fixtures and to draw the process plan for a given component.
Machine Design Lab PCC305-MSW ANALYZE mechanisms using graphical methods.
APPLY kinematic principles for motion analysis and synthesis.
DESIGN machine elements based on strength and functional requirements.
INTEGRATE analysis and design concepts for real-world applications.
DEMONSTRATE working models or simulations of mechanical systems.
Digital Manufacturing & MQC Lab PCC306-MSW DEMONSTRATE the use of conventional and digital measuring instruments for linear and angular measurements and evaluate component dimensions.
ANALYZE and DETERMINE the geometry and dimensions of components using advanced measurement systems such as optical projectors and Coordinate Measuring Machine
APPLY statistical process control techniques by constructing and interpreting control charts using suitable software tools
DEVELOP and VALIDATE CNC part programs using G and M codes and APPLY CNC simulation tools for machining operations.
IDENTIFY surface patterns/ flatness of given specimens by using optical flat.
COMPILE the information of opportunities of entrepreneurships/business in various sectors of metrology like calibrations, testing, coordinate and laser metrology etc in an industry visit report.
Smart Mechatronics Systems MDM 331 -MSW DEFINE key elements of mechatronics, principle of sensor and its characteristics.

UTILIZE concept of signal processing and MAKE use of interfacing systems such as

ADC, DAC, Digital I/O.

DETERMINE the transfer function by using block diagram reduction technique.
APPLY the concept of different controller modes to an industrial application.
DEVELOP the ladder programming for industrial application.
Engineering Simulation and Analysis MDM 332-MSW Analyze stress analysis problems of 1D bar and truss elements using FEA software.
Evaluate stress concentration factors, stresses, and deflections in machine components with geometric discontinuities and complex 3D geometries using FEA software.
Interpret results from modal analysis—understanding natural frequencies, mode shapes, and their physical significance—to make informed vibration-related design decisions.
Implement submodeling techniques to perform refined localized analysis of critical regions within a mechanical system and justify the choice of boundary conditions.
Analyze steady-state heat transfer analysis through composite structures and coupled thermal structural Analysis to assess thermomechanical behavior of engineering components.
Heat and Mass Transfer Lab MDM 333-MSW Explain fundamental heat transfer mechanisms and analyze heat conduction in engineering systems.
Analyze fins, insulation systems, and transient heat conduction problems.
Apply convection heat transfer principles and empirical correlations to determine heat transfer rates.
Analyze radiation heat exchange between surfaces and thermal systems.
Evaluate the performance of heat exchangers using LMTD and NTU methods
Product Costing for Mechanical Engineering OLE341 Understand product costing fundamentals,classify different cost elements and interpret engineering drawings and BOM for cost  estimation
Estimate material and manufacturing process costs for various processes such as machining, Sheet Metal, Casting , welding and Plastics.
Apply Process planning, Labour costing, overhead allocation, and calculate machine hour rate for accurate cost evaluation.
Analyze and optimize product cost using advanced costing techniques, design to cost Principles and industrial practices including quotation and cost reduction.

Materials and Logistics

 

OLE341 Explain the functions and importance of materials management in manufacturing systems
Apply inventory control and purchasing techniques for efficient metal management.
Analyse logistics operations including warehousing, transportation and distribution.
Developed strategies for efficient material flow and integrated supply chain management.
Industrial In-plant Training-I PCC307MSW To UNDERSTAND industrial practices and technical details followed in industry.
To ANALYZE and SOLVE engineering problems by applying engineering knowledge with teamwork and multidisciplinary approach.
Industrial Mini-Project PCC308MSW To IDENTIFY specific areas for improvement in industry with better understanding
To DEVELOP and IMPLEMENT systematic approach to solve specific industrial problem.
To DEVELOP methodology for providing solution to industrial problems with teamwork and multidisciplinary approach
To UNDERSTAND and IMPLEMENT basic principles of project management.
To SOLVE and ANALYZE industrial problems.
To PRESENT outcome and details of project work with effective presentation skills.
Seminar PCC309MSW Read and UNDERSTAND recent trends and technologies in the area of mechanical engineering.
RECOGNIZE problems after doing research literature survey using various resources.
PREPARE concise, COMPREHEND and conclude selective topic in area of mechanical engineering
MAKE use of new and recent technology (e.g. Latex) for creating technical reports
Process Planning & Tool Selection PCC310MSW INTERPRET and ANALYSE Part print of an industrial component.
ILLUSTRATE the meaning of geometric dimensions and understand the tolerance chart.
UNDERSTAND Principles of location and clamping and ESTABLISH suitable manufacture sequence.
SELECT appropriate equipment and tooling requirements.
ESTIMATE the total unit time per piece for a component in mass production.
DESIGN of Process picture sheet and operation route sheet on GPM for batch production or a special purpose machine for mass production
Advanced Materials & Manufacturing PCC311MSW DEFINE & COMPARE composites with traditional materials.
IDENTIFY & ESTIMATE different parameters of the Polymer Matrix Composite
CATEGORISE and APPLY Metal Matrix Process from possessions landscape.
ASSESS the parameters for special forming operation and SELECT appropriate special forming operation for particular applications.
CLASSIFY various advanced welding processes and SELECT suitable welding processes for particular applications.
COMPREHEND various non-conventional machining processes and SELECT suitable processes for particular applications.