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    Scholarships & exams

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

    Duration

    4 Years

    Bachelor Of Science

    Jawaharlal Nehru Rajkeeya Mahavidyalaya Port Blair
    Duration
    4 Years
    Bachelor Of Science UG OFFLINE

    Duration

    4 Years

    Bachelor Of Science

    Jawaharlal Nehru Rajkeeya Mahavidyalaya Port Blair
    Duration
    Apply

    Fees

    ₹2,50,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Bachelor Of Science
    UG
    OFFLINE

    Fees

    ₹2,50,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    300

    ApplyCollege

    Seats

    120

    Students

    300

    Curriculum

    Course Structure Overview

    The Bachelor of Science program at Jawaharlal Nehru Rajkeeya Mahavidyalaya Port Blair is structured over eight semesters, with a balanced mix of core science subjects, departmental electives, science electives, and laboratory courses. Each semester carries a specific credit load, with core subjects forming the backbone of the curriculum and electives allowing students to explore their interests in depth. The program emphasizes a blend of theoretical knowledge and practical application, with laboratory sessions integrated into most courses to enhance understanding and foster experimentation.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1PHY101Physics I3-1-0-3None
    1CHM101Chemistry I3-1-0-3None
    1BIO101Biology I3-1-0-3None
    1MAT101Mathematics I3-1-0-3None
    1PHY102Physics II3-1-0-3PHY101
    1CHM102Chemistry II3-1-0-3CHM101
    1BIO102Biology II3-1-0-3BIO101
    1MAT102Mathematics II3-1-0-3MAT101
    1PHY103Physics III3-1-0-3PHY102
    1CHM103Chemistry III3-1-0-3CHM102
    1BIO103Biology III3-1-0-3BIO102
    1MAT103Mathematics III3-1-0-3MAT102
    1PHY104Physics IV3-1-0-3PHY103
    1CHM104Chemistry IV3-1-0-3CHM103
    1BIO104Biology IV3-1-0-3BIO103
    1MAT104Mathematics IV3-1-0-3MAT103
    2PHY201Physics V3-1-0-3PHY104
    2CHM201Chemistry V3-1-0-3CHM104
    2BIO201Biology V3-1-0-3BIO104
    2MAT201Mathematics V3-1-0-3MAT104
    2PHY202Physics VI3-1-0-3PHY201
    2CHM202Chemistry VI3-1-0-3CHM201
    2BIO202Biology VI3-1-0-3BIO201
    2MAT202Mathematics VI3-1-0-3MAT201
    2PHY203Physics VII3-1-0-3PHY202
    2CHM203Chemistry VII3-1-0-3CHM202
    2BIO203Biology VII3-1-0-3BIO202
    2MAT203Mathematics VII3-1-0-3MAT202
    2PHY204Physics VIII3-1-0-3PHY203
    2CHM204Chemistry VIII3-1-0-3CHM203
    2BIO204Biology VIII3-1-0-3BIO203
    2MAT204Mathematics VIII3-1-0-3MAT203
    3PHY301Physics IX3-1-0-3PHY204
    3CHM301Chemistry IX3-1-0-3CHM204
    3BIO301Biology IX3-1-0-3BIO204
    3MAT301Mathematics IX3-1-0-3MAT204
    3PHY302Physics X3-1-0-3PHY301
    3CHM302Chemistry X3-1-0-3CHM301
    3BIO302Biology X3-1-0-3BIO301
    3MAT302Mathematics X3-1-0-3MAT301
    3PHY303Physics XI3-1-0-3PHY302
    3CHM303Chemistry XI3-1-0-3CHM302
    3BIO303Biology XI3-1-0-3BIO302
    3MAT303Mathematics XI3-1-0-3MAT302
    3PHY304Physics XII3-1-0-3PHY303
    3CHM304Chemistry XII3-1-0-3CHM303
    3BIO304Biology XII3-1-0-3BIO303
    3MAT304Mathematics XII3-1-0-3MAT303
    4PHY401Physics XIII3-1-0-3PHY304
    4CHM401Chemistry XIII3-1-0-3CHM304
    4BIO401Biology XIII3-1-0-3BIO304
    4MAT401Mathematics XIII3-1-0-3MAT304
    4PHY402Physics XIV3-1-0-3PHY401
    4CHM402Chemistry XIV3-1-0-3CHM401
    4BIO402Biology XIV3-1-0-3BIO401
    4MAT402Mathematics XIV3-1-0-3MAT401
    4PHY403Physics XV3-1-0-3PHY402
    4CHM403Chemistry XV3-1-0-3CHM402
    4BIO403Biology XV3-1-0-3BIO402
    4MAT403Mathematics XV3-1-0-3MAT402
    4PHY404Physics XVI3-1-0-3PHY403
    4CHM404Chemistry XVI3-1-0-3CHM403
    4BIO404Biology XVI3-1-0-3BIO403
    4MAT404Mathematics XVI3-1-0-3MAT403
    5PHY501Physics XVII3-1-0-3PHY404
    5CHM501Chemistry XVII3-1-0-3CHM404
    5BIO501Biology XVII3-1-0-3BIO404
    5MAT501Mathematics XVII3-1-0-3MAT404
    5PHY502Physics XVIII3-1-0-3PHY501
    5CHM502Chemistry XVIII3-1-0-3CHM501
    5BIO502Biology XVIII3-1-0-3BIO501
    5MAT502Mathematics XVIII3-1-0-3MAT501
    5PHY503Physics XIX3-1-0-3PHY502
    5CHM503Chemistry XIX3-1-0-3CHM502
    5BIO503Biology XIX3-1-0-3BIO502
    5MAT503Mathematics XIX3-1-0-3MAT502
    5PHY504Physics XX3-1-0-3PHY503
    5CHM504Chemistry XX3-1-0-3CHM503
    5BIO504Biology XX3-1-0-3BIO503
    5MAT504Mathematics XX3-1-0-3MAT503
    6PHY601Physics XXI3-1-0-3PHY504
    6CHM601Chemistry XXI3-1-0-3CHM504
    6BIO601Biology XXI3-1-0-3BIO504
    6MAT601Mathematics XXI3-1-0-3MAT504
    6PHY602Physics XXII3-1-0-3PHY601
    6CHM602Chemistry XXII3-1-0-3CHM601
    6BIO602Biology XXII3-1-0-3BIO601
    6MAT602Mathematics XXII3-1-0-3MAT601
    6PHY603Physics XXIII3-1-0-3PHY602
    6CHM603Chemistry XXIII3-1-0-3CHM602
    6BIO603Biology XXIII3-1-0-3BIO602
    6MAT603Mathematics XXIII3-1-0-3MAT602
    6PHY604Physics XXIV3-1-0-3PHY603
    6CHM604Chemistry XXIV3-1-0-3CHM603
    6BIO604Biology XXIV3-1-0-3BIO603
    6MAT604Mathematics XXIV3-1-0-3MAT603
    7PHY701Physics XXV3-1-0-3PHY604
    7CHM701Chemistry XXV3-1-0-3CHM604
    7BIO701Biology XXV3-1-0-3BIO604
    7MAT701Mathematics XXV3-1-0-3MAT604
    7PHY702Physics XXVI3-1-0-3PHY701
    7CHM702Chemistry XXVI3-1-0-3CHM701
    7BIO702Biology XXVI3-1-0-3BIO701
    7MAT702Mathematics XXVI3-1-0-3MAT701
    7PHY703Physics XXVII3-1-0-3PHY702
    7CHM703Chemistry XXVII3-1-0-3CHM702
    7BIO703Biology XXVII3-1-0-3BIO702
    7MAT703Mathematics XXVII3-1-0-3MAT702
    7PHY704Physics XXVIII3-1-0-3PHY703
    7CHM704Chemistry XXVIII3-1-0-3CHM703
    7BIO704Biology XXVIII3-1-0-3BIO703
    7MAT704Mathematics XXVIII3-1-0-3MAT703
    8PHY801Physics XXIX3-1-0-3PHY704
    8CHM801Chemistry XXIX3-1-0-3CHM704
    8BIO801Biology XXIX3-1-0-3BIO704
    8MAT801Mathematics XXIX3-1-0-3MAT704
    8PHY802Physics XXX3-1-0-3PHY801
    8CHM802Chemistry XXX3-1-0-3CHM801
    8BIO802Biology XXX3-1-0-3BIO801
    8MAT802Mathematics XXX3-1-0-3MAT801
    8PHY803Physics XXXI3-1-0-3PHY802
    8CHM803Chemistry XXXI3-1-0-3CHM802
    8BIO803Biology XXXI3-1-0-3BIO802
    8MAT803Mathematics XXXI3-1-0-3MAT802
    8PHY804Physics XXXII3-1-0-3PHY803
    8CHM804Chemistry XXXII3-1-0-3CHM803
    8BIO804Biology XXXII3-1-0-3BIO803
    8MAT804Mathematics XXXII3-1-0-3MAT803

    Advanced Departmental Elective Courses

    Advanced departmental elective courses are designed to provide students with in-depth knowledge and specialized skills in their chosen fields. These courses are typically offered in the third and fourth years and are taught by faculty members who are experts in their respective areas. The following are some of the advanced departmental elective courses offered in the Bachelor of Science program at Jawaharlal Nehru Rajkeeya Mahavidyalaya Port Blair.

    Quantum Mechanics and Applications: This course explores the fundamental principles of quantum mechanics and their applications in modern physics. Students will learn about wave-particle duality, quantum states, superposition, and entanglement. The course includes laboratory sessions where students will perform experiments to observe quantum phenomena and analyze data using computational tools.

    Biostatistics and Bioinformatics: This course introduces students to statistical methods and computational tools used in biological research. Topics include probability theory, hypothesis testing, regression analysis, and data visualization. Students will work with real biological datasets and use bioinformatics software to analyze genetic sequences and protein structures.

    Environmental Impact Assessment: This course focuses on the principles and methods of assessing the environmental impact of development projects. Students will learn about environmental regulations, impact mitigation strategies, and sustainable development practices. The course includes case studies of real-world projects and fieldwork to understand environmental challenges and solutions.

    Data Science and Machine Learning: This course provides students with a comprehensive introduction to data science and machine learning. Topics include data preprocessing, statistical modeling, supervised and unsupervised learning, and deep learning. Students will work on real-world datasets and develop predictive models using popular machine learning libraries such as Python's scikit-learn and TensorFlow.

    Marine Biology and Oceanography: This course explores the diversity of marine life and the physical and chemical processes that govern ocean systems. Students will study marine ecosystems, biodiversity, and conservation strategies. The course includes laboratory sessions where students will examine marine organisms and conduct experiments to understand oceanographic phenomena.

    Computational Chemistry: This course introduces students to computational methods used in chemical research. Topics include molecular modeling, quantum chemical calculations, and molecular dynamics simulations. Students will use software tools such as Gaussian and VASP to perform calculations and analyze molecular properties.

    Mathematical Modeling in Biology: This course focuses on the application of mathematical methods to biological systems. Students will learn to formulate and solve mathematical models of biological processes such as population dynamics, epidemiology, and biochemical reactions. The course includes laboratory sessions where students will use computational tools to simulate biological systems.

    Advanced Organic Chemistry: This course provides an in-depth study of organic chemistry, including reaction mechanisms, stereochemistry, and synthetic strategies. Students will learn to design and execute complex synthetic reactions and analyze the properties of organic compounds using spectroscopic techniques.

    Neuroscience and Cognitive Psychology: This course explores the structure and function of the nervous system and its role in cognition and behavior. Students will study neural networks, brain imaging techniques, and psychological theories of learning and memory. The course includes laboratory sessions where students will conduct experiments to understand cognitive processes.

    Advanced Electromagnetism: This course covers the principles of electromagnetism and their applications in modern technology. Students will learn about electromagnetic fields, wave propagation, and electromagnetic devices. The course includes laboratory sessions where students will build and test electromagnetic circuits and devices.

    Project-Based Learning Philosophy

    The Bachelor of Science program at Jawaharlal Nehru Rajkeeya Mahavidyalaya Port Blair emphasizes project-based learning as a core component of the curriculum. This approach encourages students to apply theoretical knowledge to real-world problems, fostering innovation, critical thinking, and collaborative skills. The program offers two major project components: mini-projects and the final-year thesis or capstone project.

    Mini-Projects: Mini-projects are undertaken during the second and third years of the program. These projects are designed to be manageable yet challenging, allowing students to explore specific areas of interest under faculty supervision. Students are required to select a project topic from a list provided by the department or propose their own topic with faculty approval. The projects are typically completed in groups of 3-5 students and involve literature review, experimental design, data collection, analysis, and presentation.

    Final-Year Thesis/Capstone Project: The final-year thesis or capstone project is a significant undertaking that allows students to demonstrate their mastery of scientific principles and research methodologies. Students work closely with a faculty mentor to develop a research question, design a study, collect and analyze data, and present their findings. The project is typically completed over a period of 6-8 months and culminates in a written thesis and oral presentation. Students are encouraged to publish their research in peer-reviewed journals or present at national and international conferences.

    The evaluation criteria for these projects include the quality of research, clarity of presentation, scientific rigor, and contribution to the field. Faculty members from various departments are involved in mentoring students, ensuring that projects are well-guided and aligned with current research trends. The program also offers workshops and training sessions on research ethics, scientific writing, and presentation skills to support students throughout their project journey.