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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Bachelor of Technology in Engineering

    PES University, Bangalore
    Duration
    4 Years
    Engineering UG OFFLINE

    Duration

    4 Years

    Bachelor of Technology in Engineering

    PES University, Bangalore
    Duration
    Apply

    Fees

    ₹6,50,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Engineering
    UG
    OFFLINE

    Fees

    ₹6,50,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    Seats

    250

    Students

    2,500

    ApplyCollege

    Seats

    250

    Students

    2,500

    Curriculum

    The curriculum at Pes University Bangalore is meticulously designed to provide students with a comprehensive understanding of engineering principles while encouraging innovation, creativity, and ethical responsibility. The program spans four years and is structured into eight semesters, each with a carefully curated set of courses that progressively build upon foundational knowledge.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    IENG101English for Engineers3-0-0-3-
    IMAT101Calculus I4-0-0-4-
    IMAT102Linear Algebra and Differential Equations3-0-0-3-
    IPHY101Physics for Engineers3-0-0-3-
    ICHE101Chemistry for Engineers3-0-0-3-
    ICOM101Computer Programming2-0-2-4-
    IECE101Introduction to Electronics3-0-0-3-
    IMEC101Engineering Mechanics3-0-0-3-
    IHSS101Humanities and Social Sciences2-0-0-2-
    ILAB101Programming Lab0-0-2-2-
    ILAB102Physics Lab0-0-2-2-
    IIMAT201Calculus II4-0-0-4MAT101
    IIENG201Engineering Drawing2-0-0-2-
    IIPHY201Electromagnetic Fields and Waves3-0-0-3PHY101
    IICHE201Organic Chemistry3-0-0-3CHE101
    IIECE201Digital Logic Design3-0-0-3ECE101
    IIMEC201Mechanics of Materials3-0-0-3MEC101
    IICSE201Data Structures and Algorithms3-0-0-3COM101
    IILAB201Digital Logic Lab0-0-2-2ECE201
    IILAB202Chemistry Lab0-0-2-2CHE201
    IIIMAT301Statistics and Probability3-0-0-3MAT201
    IIIECE301Analog Circuits3-0-0-3ECE201
    IIICSE301Database Management Systems3-0-0-3CSE201
    IIIMEC301Thermodynamics3-0-0-3MEC201
    IIICIV301Strength of Materials3-0-0-3MEC201
    IIICHM301Physical Chemistry3-0-0-3CHE201
    IIILAB301Analog Circuits Lab0-0-2-2ECE301
    IIILAB302Thermodynamics Lab0-0-2-2MEC301
    IVECE401Control Systems3-0-0-3ECE301
    IVCSE401Operating Systems3-0-0-3CSE201
    IVMEC401Fluid Mechanics3-0-0-3MEC301
    IVCIV401Structural Analysis3-0-0-3CIV301
    IVCHM401Chemical Kinetics3-0-0-3CHM301
    IVLAB401Control Systems Lab0-0-2-2ECE401
    IVLAB402Fluid Mechanics Lab0-0-2-2MEC401
    VECE501Signal Processing3-0-0-3ECE401
    VCSE501Software Engineering3-0-0-3CSE401
    VMEC501Machine Design3-0-0-3MEC401
    VCIV501Transportation Engineering3-0-0-3CIV401
    VCHM501Biochemistry3-0-0-3CHM401
    VLAB501Signal Processing Lab0-0-2-2ECE501
    VLAB502Machine Design Lab0-0-2-2MEC501
    VIECE601Microprocessors and Microcontrollers3-0-0-3ECE501
    VICSE601Artificial Intelligence3-0-0-3CSE501
    VIMEC601Manufacturing Technology3-0-0-3MEC501
    VICIV601Environmental Engineering3-0-0-3CIV501
    VICHM601Industrial Chemistry3-0-0-3CHM501
    VILAB601Microprocessors Lab0-0-2-2ECE601
    VILAB602Manufacturing Lab0-0-2-2MEC601
    VIIECE701Embedded Systems3-0-0-3ECE601
    VIICSE701Data Science and Big Data Analytics3-0-0-3CSE601
    VIIMEC701Robotics and Automation3-0-0-3MEC601
    VIICIV701Construction Management3-0-0-3CIV601
    VIICHM701Pharmaceutical Chemistry3-0-0-3CHM601
    VIILAB701Embedded Systems Lab0-0-2-2ECE701
    VIILAB702Robotics Lab0-0-2-2MEC701
    VIIIECE801Advanced Topics in Electronics3-0-0-3ECE701
    VIIICSE801Cloud Computing and DevOps3-0-0-3CSE701
    VIIIMEC801Nanotechnology and Smart Materials3-0-0-3MEC701
    VIIICIV801Geotechnical Engineering3-0-0-3CIV701
    VIIICHM801Advanced Organic Chemistry3-0-0-3CHM701
    VIIILAB801Advanced Electronics Lab0-0-2-2ECE801
    VIIILAB802Nanotechnology Lab0-0-2-2MEC801

    Advanced departmental elective courses form a significant part of the curriculum, offering students opportunities to specialize in niche areas and explore emerging technologies. Some of these include:

    • Artificial Intelligence and Machine Learning: This course delves into deep learning architectures, natural language processing, computer vision, and reinforcement learning algorithms. Students engage in projects involving neural network design, image classification, sentiment analysis, and autonomous systems.
    • Cybersecurity Fundamentals: Focused on protecting digital assets, this course covers encryption techniques, network security protocols, ethical hacking, and incident response strategies. Students learn to defend against cyber threats and secure information systems using real-world case studies.
    • Renewable Energy Systems: This course explores solar power generation, wind energy conversion, hydroelectric systems, and energy storage technologies. Students study the technical aspects of renewable energy integration into existing grids and develop models for optimizing energy efficiency.
    • Sustainable Construction Materials: Designed to address environmental concerns in construction, this course investigates eco-friendly building materials such as bamboo composites, recycled concrete, and bio-based polymers. Practical labs involve testing material properties and conducting life cycle assessments.
    • Biomedical Signal Processing: Combining engineering principles with medical applications, this course focuses on analyzing physiological signals using digital signal processing techniques. Students work on projects related to ECG monitoring, EEG analysis, and biomedical imaging systems.

    The philosophy of project-based learning at Pes University Bangalore emphasizes experiential education that bridges theory and practice. The program incorporates mandatory mini-projects in the second and third years, followed by a comprehensive final-year thesis or capstone project.

    Mini-projects are designed to reinforce classroom learning through hands-on experimentation and problem-solving. Each group of 4-5 students selects a topic related to their specialization, works under faculty supervision, and presents findings at mid-year review sessions. The projects often involve designing prototypes, conducting simulations, or implementing software tools that demonstrate conceptual understanding.

    The final-year thesis is a significant component of the program, requiring students to conduct independent research or develop an innovative solution to a complex engineering problem. Students collaborate with faculty mentors from their chosen specialization and may work on industry-sponsored projects or university-initiated research initiatives.

    Project selection involves a detailed proposal process where students present their ideas, discuss feasibility, and receive feedback from advisors. The evaluation criteria include technical depth, innovation, presentation quality, and adherence to academic standards. Students are encouraged to participate in national-level competitions such as the National Science Foundation (NSF) Research Experience for Undergraduates (REU), IEEE Student Competition, and the National Institute of Technology (NIT) Innovation Challenge.