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B.Tech. Mechanical Engineering

program-details

School of Engineering and Technology, CT University offers 4 years Bachelor of Technology in Mechanical Engineering Programme. It provides rigorous foundations of core Mechanical Engineering, combination of theoretical core concepts with practical training in labs and on software tools equips the students to be industry ready. The curriculum includes professional training and certification offered by top leading industry. Objective of this programme is to compete with well-established academic institutions in India and abroad.

Industry Immersion

To impart students with a scholastic environment that develops brilliance and leadership required for a successful career.

eligibility criteria

Passed the 10+2 examination with Physics/ Mathematics/ Chemistry/ Computer Science/ Electronics/ Information Technology/ Biology/ Informatics Practices,/ Biotechnology/ Technical Vocational subjects/ Agriculture/ Engineering Graphics/ Business Studies/ Entrepreneurship, as per Table 8.4 (Agriculture stream for Agriculture Engineering), and obtained at least 45% marks (40% marks in the case of candidates belonging to reserved categories) in the above subjects taken together 
OR
passed the D.Voc. stream in the same or an allied sector.

Admission criteria

Merit in CT-SET, subject to fulfilling eligibility criteria.

Duration

4 Years

Curriculum

1ST SEMESTER SUBJECTS

Applied Physics provides fundamental knowledge of mechanics, waves, optics, electricity, magnetism, and modern physics, emphasizing practical applications and problem-solving skills essential for engineering and technological development.

Applied Physics Laboratory develops practical skills through experiments in mechanics, optics, electricity, magnetism, and semiconductor physics, enabling students to verify theoretical concepts, analyse experimental data, and understand physical phenomena.

Programming Concepts introduces the fundamentals of computer programming, including problem-solving techniques, algorithms, flowcharts, data types, operators, control structures, functions, and arrays, using a structured programming language.

Programming Concepts Lab provides hands-on practice in writing, debugging, and executing programs based on the concepts covered in Programming Concepts, including control structures, functions, and arrays.

This course provides develops advanced concepts in multivariable calculus, vector calculus, differential equations, Laplace transforms, and numerical methods, equipping students with mathematical techniques for solving engineering problems..

Workshop Practices provides hands-on exposure to basic manufacturing trades such as carpentry, fitting, welding, sheet metal work, and plumbing, along with workshop safety practices.

This course introduces students to the fundamental concepts of environmental science, including human–environment interactions, natural resources, biodiversity, ecosystems, environmental pollution, climate change, and environmental health. It emphasizes sustainable development, conservation of natural resources, environmental management, and awareness of environmental policies and legislation. Students develop the ability to analyze environmental issues and propose sustainable solutions for local and global challenges.

Communicative English-I develops foundational language skills in grammar, vocabulary, listening, speaking, reading, and writing for effective communication.

Entrepreneurship Mindset-I introduces entrepreneurial thinking, creativity and innovation, opportunity recognition, and the process of generating and evaluating business ideas.

Open Source Technology covers the philosophy and practices of open-source software development, licensing models, collaborative development tools, and fundamentals of Linux-based operating systems.

Open-Source Technology Lab provides hands-on practice with Linux-based operating systems, open-source tools, and collaborative version-control platforms.

2ND SEMESTER SUBJECTS

Applied Chemistry introduces fundamental chemical principles and their engineering applications, covering water chemistry, corrosion, materials, polymers, fuels, nanomaterials, spectroscopy, and green chemistry for sustainable technological development.

Applied Chemistry Laboratory develops practical skills through experiments involving water analysis, corrosion, chemical reactions, material characterization, solution preparation, and analytical techniques, emphasizing safety, accuracy, and scientific interpretation.

This course introduces fundamental concepts of electrical and electronic engineering, including circuits, electrical machines, semiconductor devices, digital systems, measurements, and practical applications in engineering and technology.

This laboratory develops practical skills in electrical circuits, measurements, electronic components, semiconductor devices, digital circuits, and basic electrical systems through experiments, testing, analysis, and troubleshooting techniques.

This course provides develops advanced concepts in multivariable calculus, vector calculus, differential equations, Laplace transforms, and numerical methods, equipping students with mathematical techniques for solving engineering problems.

Engineering Drawing covers principles of orthographic projection, sectional views, isometric and pictorial drawings, and an introduction to computer-aided drafting (CAD).

Universal Human Values, covering self-awareness, love, compassion, truth, non-violence, righteousness, sacrifice, and inner transformation. Students will develop ethical decision-making, empathy, emotional intelligence, self-reflection, and value-based thinking for personal and professional life.

Communicative English II builds on foundational language skills with emphasis on advanced communication, presentation skills, group discussions, and technical writing.

Entrepreneurship Mindset-II covers business planning, understanding the startup ecosystem, funding avenues, and effective pitching of business ideas.

Python Programming covers Python syntax and semantics, data structures, control flow, functions, object-oriented programming, file handling, and modules, with applications in data-driven programming.

Python Programming Lab provides hands-on practice in writing and executing Python programs covering data structures, control flow, functions, object-oriented programming, and file handling.

3RD SEMESTER SUBJECTS

Provides an understanding of intellectual property concepts, including patents, copyrights, trademarks, and industrial designs, enabling students to protect, manage, and effectively utilize intellectual creations and innovations.

Develops logical reasoning, quantitative aptitude, problem-solving, and critical thinking abilities, enabling students to analyze information, make informed decisions, and solve academic and professional problems effectively.

Introduces the principles and practices of yoga, including physical postures, breathing techniques, meditation, and relaxation, promoting physical well-being, mental balance, concentration, and a healthy lifestyle.

Covers the principles and conventions of machine drawing, including sectional views, assembly drawings, and detailed representation of machine components for effective engineering communication.

Focuses on the study of motion of machine elements and mechanisms, including velocity, acceleration, and mechanism analysis, forming a foundation for the analysis and design of mechanical systems.

Offers hands-on experience in studying and analyzing the motion of various mechanisms through practical experiments, enabling students to verify fundamental principles of machine kinematics.

Covers the fundamental concepts and laws of thermodynamics, properties of systems, energy interactions, thermodynamic processes, and cycles with applications to thermal and energy systems.

Examines the behavior of engineering materials under different loading conditions, including stress, strain, shear, bending, and torsion, with applications in the safe design of mechanical components.

Emphasizes experimental determination of material properties and structural behavior under various loading conditions, reinforcing concepts related to stress, strain, bending, torsion, and material strength.

Encourages students to develop basic proficiency in an Indian or foreign language while enhancing communication skills, cultural awareness, and interaction in diverse environments.

4TH SEMESTER SUBJECTS

Enhances logical reasoning, quantitative aptitude, critical thinking, and analytical abilities through advanced problem-solving and decision-making techniques relevant to academic and professional situations.

Explores fundamental human values, ethical living, harmony in relationships, and responsible behavior, fostering a holistic understanding of personal, social, and professional well-being.

Encourages the practical application of human values in everyday life, relationships, society, and professional environments, promoting ethical conduct, responsible citizenship, and harmonious living.

Covers advanced mathematical concepts and techniques, including differential equations, transforms, numerical methods, and related topics, supporting their application in engineering analysis and problem-solving.

Focuses on the study of forces and motion in machine components and mechanisms, including balancing, flywheels, governors, gyroscopic effects, and vibrations for effective analysis of dynamic mechanical systems.

Examines the application of thermodynamic principles to power and energy systems, including steam and gas power cycles, compressors, turbines, and other thermal engineering devices.

Reinforces thermodynamic concepts through experimental investigation of thermal systems and equipment, enabling students to evaluate performance, efficiency, and operating characteristics of various thermodynamic devices.

Extends the study of material behavior under complex loading conditions, covering advanced bending, columns, strain energy, and failure theories for the analysis and design of mechanical components.

Introduces conventional manufacturing processes and techniques, including casting, forming, machining, and related operations, with emphasis on process selection, machine tools, and production of engineering components.

Develops practical skills in manufacturing processes through hands-on experiments and machining operations, enabling students to understand process parameters, machine tools, and the production of engineering components.

Explores the structure, properties, selection, and applications of engineering materials, including metals, alloys, polymers, ceramics, and composites, enabling informed material selection for engineering applications.

5TH SEMESTER SUBJECTS

Introduces the fundamental concepts and strategies of digital marketing, including online consumer behavior, social media, search engine marketing, content marketing, and digital marketing tools.

Develops essential leadership and management competencies, including communication, teamwork, decision-making, problem-solving, motivation, and effective management of people and resources.

Assesses students’ practical exposure and learning gained during industrial training, emphasizing the application of engineering knowledge, workplace practices, professional skills, and industrial processes.

Covers the fundamental principles of fluid mechanics and their application to hydraulic and fluid machinery, including pumps, turbines, and other systems used for fluid flow and energy conversion.

Develops practical understanding of fluid flow and hydraulic machinery through experiments, enabling students to determine performance characteristics, efficiency, and operating parameters of various fluid systems and machines.

Covers the principles of measurement, accuracy, precision, limits, fits, and inspection techniques, along with instrumentation used for measuring physical quantities in engineering applications.

Provides hands-on experience with precision measuring instruments and inspection techniques, enabling students to perform dimensional measurements, assess measurement errors, and evaluate the accuracy of engineering components.

Enables students to explore an area of specialized study within mechanical engineering, allowing them to develop deeper knowledge and skills aligned with their academic interests and professional goals.

Offers advanced and specialized learning in a selected area of mechanical engineering, supporting students in developing domain-specific knowledge and applying engineering concepts to contemporary professional challenges.

6TH SEMESTER SUBJECTS

Introduces the principles and practices of entrepreneurship, including opportunity identification, business planning, innovation, risk assessment, and resource management, fostering an entrepreneurial mindset for creating and managing ventures.

Covers the fundamental principles of heat transfer and refrigeration, including conduction, convection, radiation, refrigeration cycles, refrigerants, and refrigeration systems used in thermal engineering applications.

Develops practical understanding of heat transfer and refrigeration systems through experiments, enabling students to determine thermal performance, heat transfer characteristics, and operating parameters of various systems.

Focuses on the principles and methods used in the design of machine components subjected to different loading conditions, emphasizing strength, safety, reliability, and selection of appropriate materials and dimensions.

Introduces mathematical and analytical techniques for solving complex engineering and management problems, including linear programming, transportation, assignment, sequencing, and optimization methods for effective decision-making.

Enables students to pursue specialized knowledge in a selected area of mechanical engineering, supporting deeper technical understanding and development of skills relevant to their academic and professional interests.

Provides practical exposure to specialized concepts and techniques associated with the selected discipline elective, enabling students to apply theoretical knowledge through experiments and hands-on activities.

Offers advanced study in a specialized area of mechanical engineering, enabling students to develop domain-specific knowledge and apply engineering principles to contemporary technical challenges.

Reinforces specialized theoretical concepts through practical experiments and hands-on applications, developing students’ ability to analyze, operate, and evaluate systems relevant to the selected discipline.

Develops essential professional competencies, including communication, teamwork, interpersonal skills, workplace ethics, and career readiness, preparing students for effective participation in professional environments.

7TH SEMESTER SUBJECTS

Explores fundamental human values, ethical living, harmony in relationships, and responsible behavior, fostering a holistic understanding of personal, social, and professional well-being.

Develops logical reasoning, quantitative aptitude, critical thinking, and problem-solving abilities, enabling students to analyze information and make effective decisions in academic and professional situations.

Introduces the fundamental principles, structure, rights, duties, and functioning of the Indian Constitution, developing awareness of constitutional values, democratic institutions, and responsible citizenship.

Examines the fundamentals of dynamic systems, mechanical vibrations, vibration analysis, and control techniques, enabling students to understand and manage dynamic behavior in mechanical and engineering systems.

Covers the principles, techniques, and practices of total quality management, including quality planning, assurance, control, continuous improvement, and customer-focused approaches for achieving organizational excellence.

Integrates computer-based techniques for product design and manufacturing, covering CAD modeling, design analysis, process planning, and computer-aided manufacturing for efficient and modern production systems.

Develops practical skills in computer-aided design and manufacturing through hands-on exercises involving CAD modeling, engineering drawings, design applications, and manufacturing-related software tools.

Introduces systematic approaches to conducting research, including research design, literature review, data collection, analysis, interpretation, technical writing, and ethical practices in engineering research.

Enables students to pursue specialized study in a selected area of mechanical engineering, broadening their technical knowledge and developing expertise aligned with their academic and professional interests.

Offers advanced and specialized learning in a chosen area of mechanical engineering, enabling students to apply engineering principles to emerging technologies and contemporary professional challenges.

Enhances professional competencies through development of communication, teamwork, leadership, interpersonal skills, workplace ethics, and career readiness for successful professional engagement.

8TH SEMESTER SUBJECTS

Provides practical exposure to industrial operations, processes, and workplace practices, enabling students to apply engineering knowledge in real-world settings and develop professional, technical, and problem-solving skills.

Enables students to undertake an independent research study involving problem identification, literature review, methodology development, experimentation or analysis, and interpretation of results to develop research and technical skills.

fees

Details

Amount

Programme Fees (per Semester)

65000

Examination Fees

3000

International Fees (per Year)

$4300

Fee Slab

Slab >=60% - 74.99% >=75% - 89.99% >=90% & Above
Fee ₹60000 ₹55000 ₹50000

Students can avail these slots depending on the marks they have scored. Each slot reflects a different academic range, helping students understand where they stand and what benefits they qualify for.

Programme Outcomes

  • Engineering Knowledge - Apply mathematics, science, engineering fundamentals, and specialized knowledge to solve complex engineering problems.
  • Problem Analysis - Identify, formulate, and analyze complex engineering problems by conducting research and reaching well-supported conclusions using fundamental principles of mathematics, natural sciences, and engineering sciences.
  • Design and Development of Solutions - Design solutions and develop system components or processes that meet specified requirements while considering public health, safety, and the cultural, societal, and environmental aspects.
  • Investigation of Complex Problems - Utilize research-based knowledge and methods, including experimental design, data analysis, and synthesis, to investigate complex engineering problems and draw valid conclusions.
  • Modern Tool Usage - Employ appropriate techniques, resources, and modern engineering and IT tools, including predictive modeling, for complex engineering activities while understanding their limitations.
  • Engineering and Society - Apply contextual knowledge to assess societal, health, safety, legal, and cultural issues related to professional engineering practice and act responsibly accordingly.
  • Environment and Sustainability - Understand the impact of engineering solutions in societal and environmental contexts, and demonstrate knowledge of sustainable development principles.
  • Ethics - Apply ethical principles, adhere to professional ethics and responsibilities, and comply with engineering practice norms.
  • Individual and Teamwork - Work effectively as an individual and as a member or leader in diverse teams and multidisciplinary settings.
  • Communication - Communicate effectively about complex engineering activities with the engineering community and society at large, including writing reports, creating design documentation, making presentations, and providing clear instructions.
  • Project Management and Finance - Demonstrate knowledge of engineering and management principles, apply them in one's work as a team member or leader, and efficiently manage projects considering economic and financial factors in various disciplines and multidisciplinary environments.
  • Life-long Learning - Recognize the importance of independent and life-long learning, and possess the preparation and ability to engage in continuous learning to adapt to technological changes in a broader context.

Programme Specific Outcomes

  • Ability to design using Design of Machine Elements theories and create prototypes using relevant manufacturing technology.
  • Capability of building efficient energy conversion systems by applying basic understanding of Thermodynamics, Heat transfer, and Fluid Mechanics.
  • Demonstrate the ability to propose cost-effective optimized solutions using simulated environments of Computer-Aided Design (CAD), Computer-Aided Manufacturing (CAM), and Computer-Aided Engineering (CAE).
  • Effectively build and communicate solutions by utilizing knowledge from basic mechanical engineering, basic sciences, mathematics, and computational skills and tools.

Salient Features

  • To prepare students to excel in Mechanical Engineering and its application to real-life problems to succeed in industry/technical profession.
  • To provide students with a solid foundation in engineering and its basic principles, along with trending computing fundamentals and techniques required to solve related problems. This will also prepare them to pursue higher studies and research.
  • To inculcate students with a professional and ethical attitude, effective communication skills, a multidisciplinary approach, and the ability to relate computing issues to a broader social context.
  • To provide students with an academic environment that promotes excellence, leadership, and continuous learning. This includes staying updated on technology and trends needed for a successful career.

Infrastructure