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    Scholarships & exams

    support@collegese.com
    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Bachelor of Technology in Engineering

    NIIT University Alwar
    Duration
    4 Years
    Engineering UG OFFLINE

    Duration

    4 Years

    Bachelor of Technology in Engineering

    NIIT University Alwar
    Duration
    Apply

    Fees

    ₹2,50,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Engineering
    UG
    OFFLINE

    Fees

    ₹2,50,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    Seats

    1,200

    Students

    1,200

    ApplyCollege

    Seats

    1,200

    Students

    1,200

    Curriculum

    Course Structure Overview

    The engineering program at Niit University Alwar is structured over eight semesters, with each semester containing a balanced mix of core engineering courses, departmental electives, science electives, and laboratory sessions. The curriculum is designed to build foundational knowledge in the first two years, followed by specialization and advanced application in later semesters.

    First Year Courses

    • Mathematics I & II
    • Physics I & II
    • Chemistry I & II
    • Engineering Drawing & Computer Graphics
    • Communication Skills
    • Introduction to Engineering
    • Computer Programming Lab
    • Basic Electrical & Electronics

    Second Year Courses

    • Data Structures and Algorithms
    • Database Management Systems
    • Digital Logic Design
    • Signals and Systems
    • Engineering Mechanics
    • Materials Science
    • Computer Organization & Architecture
    • Mathematical Methods

    Third Year Courses

    • Operating Systems
    • Compiler Design
    • Computer Networks
    • Machine Learning
    • Control Systems
    • Power Electronics
    • Heat Transfer
    • Fluid Mechanics

    Fourth Year Courses

    • Capstone Project I
    • Capstone Project II
    • Advanced Topics in AI/ML
    • Network Security
    • Sustainable Energy Systems
    • Project Management
    • Entrepreneurship
    • Industrial Internship

    Detailed Course List by Semester

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1MTH101Calculus I3-0-0-3-
    1MTH102Calculus II3-0-0-3MTH101
    1PHY101Physics I3-0-0-3-
    1PHY102Physics II3-0-0-3PHY101
    1CHM101Chemistry I3-0-0-3-
    1CHM102Chemistry II3-0-0-3CHM101
    1ENG101Engineering Drawing & Computer Graphics2-0-2-4-
    1COM101Communication Skills2-0-0-2-
    1INT101Introduction to Engineering2-0-0-2-
    1CPP101Computer Programming Lab0-0-3-3-
    1BAS101Basic Electrical & Electronics3-0-0-3-
    2MTH201Mathematical Methods3-0-0-3MTH102
    2PHY201Electromagnetic Fields3-0-0-3PHY102
    2CHM201Organic Chemistry3-0-0-3CHM102
    2ELE201Basic Electronics3-0-0-3BAS101
    2MEC201Engineering Mechanics3-0-0-3-
    2MAT201Materials Science3-0-0-3-
    2CSE201Computer Organization & Architecture3-0-0-3CPP101
    2MTH202Differential Equations3-0-0-3MTH102
    3CSE301Data Structures and Algorithms3-0-0-3CPP101
    3CSE302Database Management Systems3-0-0-3CSE301
    3ECE301Digital Logic Design3-0-0-3BAS101
    3MEC301Heat Transfer3-0-0-3MTH201
    3ELE301Signals and Systems3-0-0-3MTH201
    3CHM301Physical Chemistry3-0-0-3CHM201
    3MAT301Metallurgy & Materials3-0-0-3MAT201
    4CSE401Operating Systems3-0-0-3CSE301
    4CSE402Compiler Design3-0-0-3CSE301
    4ECE401Computer Networks3-0-0-3ECE301
    4MEC401Control Systems3-0-0-3ELE301
    4ELE401Power Electronics3-0-0-3ELE301
    4CHM401Chemical Reaction Engineering3-0-0-3CHM301
    4MAT401Advanced Materials3-0-0-3MAT301
    5CSE501Machine Learning3-0-0-3CSE401
    5ECE501Network Security3-0-0-3ECE401
    5MEC501Sustainable Energy Systems3-0-0-3MEC401
    5ELE501Electrical Machines3-0-0-3ELE401
    5CHM501Environmental Chemistry3-0-0-3CHM401
    5MAT501Nanomaterials3-0-0-3MAT401
    6CSE601Advanced Topics in AI/ML3-0-0-3CSE501
    6ECE601Embedded Systems3-0-0-3ECE401
    6MEC601Fluid Mechanics3-0-0-3MEC401
    6ELE601Power System Analysis3-0-0-3ELE501
    6CHM601Biotechnology3-0-0-3CHM501
    6MAT601Computational Materials3-0-0-3MAT501
    7CSE701Capstone Project I0-0-6-6-
    7ECE701Research Methodology2-0-0-2-
    7MEC701Project Management2-0-0-2-
    7ELE701Industrial Internship0-0-4-4-
    7CHM701Special Topics in Chemistry2-0-0-2-
    7MAT701Advanced Computational Techniques2-0-0-2-
    8CSE801Capstone Project II0-0-6-6CSE701
    8ECE801Entrepreneurship2-0-0-2-
    8MEC801Advanced Project Work0-0-6-6-
    8ELE801Final Internship Report0-0-4-4ELE701
    8CHM801Industry Collaboration Project2-0-0-2-
    8MAT801Research Thesis0-0-6-6-

    Advanced Departmental Electives

    Departmental electives provide students with opportunities to explore specialized topics within their field of study. These courses are designed to deepen understanding and enhance practical skills.

    Machine Learning (CSE501)

    This course introduces students to the fundamental concepts of machine learning, including supervised and unsupervised learning, neural networks, and deep learning architectures. Students learn to implement algorithms using Python and libraries like scikit-learn and TensorFlow. The course emphasizes real-world applications in areas such as computer vision, natural language processing, and recommendation systems.

    Network Security (ECE501)

    This elective covers essential topics in network security, including cryptography, firewall configurations, intrusion detection systems, and secure communication protocols. Students gain hands-on experience with tools like Wireshark, Snort, and Kali Linux. The course also explores legal and ethical aspects of cybersecurity.

    Sustainable Energy Systems (MEC501)

    This course examines renewable energy technologies such as solar photovoltaics, wind turbines, hydroelectric systems, and geothermal power. Students learn about energy storage solutions, smart grid integration, and environmental impact assessments. Practical sessions include designing small-scale renewable energy systems.

    Electrical Machines (ELE501)

    This course provides a comprehensive understanding of electrical machines such as transformers, induction motors, synchronous generators, and DC machines. Students study the principles of operation, performance characteristics, and applications in power generation and distribution.

    Environmental Chemistry (CHM501)

    This elective explores the chemical processes that occur in the environment, including pollution chemistry, water quality analysis, and atmospheric chemistry. Students learn to analyze environmental samples and assess the impact of human activities on ecosystems.

    Nanomaterials (MAT501)

    This course introduces students to nanotechnology and the properties of materials at the nanoscale. Topics include synthesis methods, characterization techniques, and applications in electronics, medicine, and energy storage. Students work with advanced laboratory equipment such as scanning electron microscopes and atomic force microscopes.

    Advanced Topics in AI/ML (CSE601)

    This course delves into advanced topics in artificial intelligence and machine learning, including reinforcement learning, generative adversarial networks, transfer learning, and explainable AI. Students develop complex models using frameworks like PyTorch and Hugging Face Transformers.

    Embedded Systems (ECE601)

    This elective focuses on designing embedded systems for real-time applications. Students learn to program microcontrollers, interface sensors, design hardware-software co-design solutions, and optimize system performance. Projects include building IoT devices and robotics controllers.

    Fluid Mechanics (MEC601)

    This course covers fluid behavior under various conditions, including laminar and turbulent flow, boundary layer theory, and computational fluid dynamics. Students apply theoretical concepts to real-world problems in aerodynamics, hydraulics, and chemical engineering processes.

    Power System Analysis (ELE601)

    This course explores the analysis and design of power systems, including load flow studies, fault analysis, stability, and protection schemes. Students use software tools like MATLAB and PSCAD to simulate and analyze complex power system scenarios.

    Biotechnology (CHM601)

    This elective introduces students to biotechnological processes and applications in medicine, agriculture, and industry. Topics include genetic engineering, fermentation technology, bioinformatics, and regulatory frameworks for biotech products.

    Computational Materials (MAT601)

    This course combines materials science with computational methods to predict material properties and behavior. Students learn to use software packages like VASP and Quantum Espresso for electronic structure calculations and molecular dynamics simulations.

    Project-Based Learning Philosophy

    The engineering program at Niit University Alwar places a strong emphasis on project-based learning as a means of integrating theoretical knowledge with practical application. This approach ensures that students are not only proficient in academic concepts but also capable of solving real-world problems.

    Mini-Projects Structure

    Mini-projects are introduced in the second year and continue throughout the program. These projects typically span one semester and involve small teams of 3-5 students working under faculty supervision. Projects are selected based on current industry trends, research areas, or societal needs.

    Mini-projects are evaluated using a rubric that considers technical feasibility, innovation, teamwork, presentation quality, and documentation. Students must submit progress reports, mid-term presentations, and final deliverables. The project work contributes significantly to the overall grade in each semester.

    Final-Year Thesis/Capstone Project

    The capstone project is a comprehensive endeavor that spans two semesters (7th and 8th). Students select a topic aligned with their specialization or interest, develop a research proposal, conduct experiments or simulations, and present findings to a panel of experts.

    Faculty mentors are assigned based on the student's chosen area of focus. The project is expected to contribute original knowledge or provide innovative solutions to existing challenges. Many capstone projects result in patents, publications, or startup ventures.

    Project Selection Process

    Students can choose their project topics from a list provided by faculty members or propose their own ideas after consultation with advisors. The selection process ensures that projects are feasible within the given timeframe and resources.

    Evaluation Criteria

    Projects are evaluated based on multiple criteria, including innovation, technical depth, clarity of presentation, adherence to deadlines, and impact on the field. Regular feedback from mentors helps students refine their work and improve outcomes.