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    Scholarships & exams

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

    Duration

    4 Years

    Bachelor of Technology

    Abes Engineering College
    Duration
    4 Years
    Bachelor of Technology UG OFFLINE

    Duration

    4 Years

    Bachelor of Technology

    Abes Engineering College
    Duration
    Apply

    Fees

    ₹6,50,000

    Placement

    92.5%

    Avg Package

    ₹65,00,000

    Highest Package

    ₹1,20,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Bachelor of Technology
    UG
    OFFLINE

    Fees

    ₹6,50,000

    Placement

    92.5%

    Avg Package

    ₹65,00,000

    Highest Package

    ₹1,20,00,000

    Seats

    300

    Students

    1,200

    ApplyCollege

    Seats

    300

    Students

    1,200

    Curriculum

    Course List Across 8 Semesters

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1ENG101English for Engineering Communication3-0-0-3-
    1MAT101Mathematics I4-0-0-4-
    1PHY101Physics for Engineers3-0-0-3-
    1CHM101Chemistry for Engineering Students3-0-0-3-
    1CSE101Introduction to Programming2-0-2-4-
    1ESC101Engineering Graphics and Design2-0-2-4-
    1ELN101Basic Electrical Engineering3-0-0-3-
    1CSE102Data Structures and Algorithms3-0-0-3CSE101
    1MAT102Mathematics II4-0-0-4MAT101
    1PHY102Optics, Waves and Modern Physics3-0-0-3PHY101
    2CSE201Object Oriented Programming using C++3-0-0-3CSE102
    2MAT201Mathematics III4-0-0-4MAT102
    2CHM201Physical Chemistry3-0-0-3CHM101
    2PHY201Thermodynamics and Statistical Mechanics3-0-0-3PHY102
    2CSE202Database Management Systems3-0-0-3CSE102
    2ELN201Electromagnetic Fields and Circuits3-0-0-3ELN101
    2ESC201Mechanics of Materials3-0-0-3-
    3CSE301Operating Systems3-0-0-3CSE202
    3MAT301Mathematics IV4-0-0-4MAT201
    3CHM301Inorganic Chemistry3-0-0-3CHM201
    3PHY301Quantum Mechanics and Nuclear Physics3-0-0-3PHY201
    3CSE302Computer Networks3-0-0-3CSE202
    3ELN301Signal and Systems3-0-0-3ELN201
    3ESC301Strength of Materials3-0-0-3ESC201
    4CSE401Software Engineering3-0-0-3CSE301
    4MAT401Mathematics V4-0-0-4MAT301
    4CHM401Organic Chemistry3-0-0-3CHM301
    4PHY401Electromagnetic Waves and Optics3-0-0-3PHY301
    4CSE402Machine Learning3-0-0-3CSE302
    4ELN401Control Systems3-0-0-3ELN301
    4ESC401Design of Machine Elements3-0-0-3ESC301
    5CSE501Artificial Intelligence3-0-0-3CSE402
    5MAT501Advanced Mathematics4-0-0-4MAT401
    5CHM501Physical Organic Chemistry3-0-0-3CHM401
    5PHY501Atomic and Molecular Physics3-0-0-3PHY401
    5CSE502Big Data Analytics3-0-0-3CSE402
    5ELN501Digital Signal Processing3-0-0-3ELN401
    5ESC501Thermodynamics and Heat Transfer3-0-0-3ESC401
    6CSE601Deep Learning3-0-0-3CSE501
    6MAT601Probability and Statistics4-0-0-4MAT501
    6CHM601Chemical Kinetics3-0-0-3CHM501
    6PHY601Nuclear and Particle Physics3-0-0-3PHY501
    6CSE602Cloud Computing3-0-0-3CSE502
    6ELN601Microprocessors and Microcontrollers3-0-0-3ELN501
    6ESC601Manufacturing Processes3-0-0-3ESC501
    7CSE701Computer Vision3-0-0-3CSE601
    7MAT701Applied Mathematics4-0-0-4MAT601
    7CHM701Advanced Organic Chemistry3-0-0-3CHM601
    7PHY701Quantum Field Theory3-0-0-3PHY601
    7CSE702Internet of Things3-0-0-3CSE602
    7ELN701Antennas and Wave Propagation3-0-0-3ELN601
    7ESC701Advanced Materials3-0-0-3ESC601
    8CSE801Capstone Project4-0-0-4CSE702
    8MAT801Mathematical Modeling4-0-0-4MAT701
    8CHM801Chemical Engineering Principles3-0-0-3CHM701
    8PHY801Advanced Physics3-0-0-3PHY701
    8CSE802Research Methodology3-0-0-3CSE801
    8ELN801Embedded Systems3-0-0-3ELN701
    8ESC801Project Management3-0-0-3ESC701

    Advanced Departmental Elective Courses

    Advanced departmental electives at Abes Engineering College are designed to provide students with specialized knowledge and skills in their chosen fields. These courses go beyond the core curriculum, offering deeper insights into emerging technologies and applications.

    One such course is 'Deep Learning,' which explores advanced neural network architectures, including convolutional networks for image recognition and recurrent networks for sequence modeling. Students learn to implement models using frameworks like TensorFlow and PyTorch, applying them to real-world datasets.

    'Internet of Things (IoT)' delves into the integration of sensors, devices, and cloud platforms to create smart environments. The course covers protocols like MQTT, CoAP, and HTTP, along with practical implementations in home automation, smart agriculture, and industrial monitoring systems.

    'Computer Vision' focuses on algorithms that enable computers to interpret and understand visual information from the world. Topics include image segmentation, object detection, facial recognition, and 3D reconstruction techniques using OpenCV and other libraries.

    'Big Data Analytics' introduces students to tools like Hadoop, Spark, and Kafka for processing large datasets. The course emphasizes data mining, machine learning algorithms, and statistical analysis to extract meaningful insights from complex data structures.

    'Cloud Computing' covers virtualization technologies, cloud service models (IaaS, PaaS, SaaS), and deployment strategies. Students gain hands-on experience with platforms like AWS, Azure, and Google Cloud, building scalable applications and services.

    'Machine Learning' explores supervised and unsupervised learning techniques, including decision trees, random forests, clustering algorithms, and neural networks. The course includes practical projects where students develop predictive models for various domains such as healthcare, finance, and marketing.

    'Software Engineering' teaches the principles of software design, development, testing, and maintenance. Students work in teams to build full-stack applications using agile methodologies, version control systems like Git, and continuous integration tools.

    'Cybersecurity' focuses on protecting digital assets from threats such as malware, phishing, and data breaches. The course covers encryption methods, network security protocols, incident response procedures, and ethical hacking practices.

    'Data Structures and Algorithms' is a foundational course that enhances problem-solving abilities through algorithmic thinking. Students study sorting, searching, graph traversal, dynamic programming, and complexity analysis techniques.

    'Database Management Systems' introduces students to relational and non-relational databases, SQL queries, normalization, indexing, and transaction management. The course includes practical sessions on designing and optimizing database schemas.

    'Computer Networks' covers network architecture, protocols, routing algorithms, and network security. Students learn about LAN, WAN, wireless networks, and internet services, with lab sessions involving packet analysis and simulation tools.

    'Operating Systems' explores system design principles, process management, memory allocation, file systems, and concurrency control mechanisms. The course includes practical assignments on OS concepts using Linux environments.

    Project-Based Learning Philosophy

    At Abes Engineering College, project-based learning is central to the B.Tech experience. This approach integrates theoretical knowledge with practical application, fostering innovation and critical thinking among students.

    Mini-projects begin in the second year, allowing students to explore specific topics within their field of study. These projects are typically completed in groups, promoting teamwork and communication skills. Each project is guided by a faculty mentor who provides technical support and feedback throughout the process.

    The final-year thesis or capstone project represents the culmination of the student's academic journey. Students select a topic based on their interests and career goals, often collaborating with industry partners or research organizations. The project involves extensive literature review, experimental design, data collection, analysis, and presentation.

    Evaluation criteria for projects include technical depth, creativity, adherence to timelines, quality of deliverables, and oral defense performance. Students are encouraged to present their work at conferences, publish papers, or apply for patents.