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

    Duration

    4 Years

    Bachelor Of Science

    Sri Nagarjuna Arts And Science College Prakasam
    Duration
    4 Years
    Bachelor Of Science UG OFFLINE

    Duration

    4 Years

    Bachelor Of Science

    Sri Nagarjuna Arts And Science College Prakasam
    Duration
    Apply

    Fees

    ₹1,20,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Bachelor Of Science
    UG
    OFFLINE

    Fees

    ₹1,20,000

    Placement

    92.0%

    Avg Package

    ₹4,50,000

    Highest Package

    ₹8,00,000

    Seats

    150

    Students

    300

    ApplyCollege

    Seats

    150

    Students

    300

    Curriculum

    Course Structure and Credit Distribution

    The Bachelor of Science program at Sri Nagarjuna Arts And Science College Prakasam is designed to provide a comprehensive education in science, with a strong emphasis on both theoretical knowledge and practical application. The curriculum is divided into 8 semesters, with each semester carrying a specific credit distribution to ensure balanced academic load and holistic development.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1PHY101General Physics I3-1-0-4None
    1CHM101General Chemistry I3-1-0-4None
    1BIO101Introduction to Biology3-1-0-4None
    1MAT101Mathematics for Scientists3-1-0-4None
    1CS101Computer Programming3-1-0-4None
    1PHY102General Physics II3-1-0-4PHY101
    1CHM102General Chemistry II3-1-0-4CHM101
    1BIO102Cell Biology3-1-0-4BIO101
    1MAT102Calculus I3-1-0-4MAT101
    1CS102Data Structures3-1-0-4CS101
    2PHY201Thermodynamics3-1-0-4PHY102
    2CHM201Organic Chemistry3-1-0-4CHM102
    2BIO201Molecular Biology3-1-0-4BIO102
    2MAT201Calculus II3-1-0-4MAT102
    2CS201Algorithms3-1-0-4CS102
    2PHY202Electromagnetism3-1-0-4PHY201
    2CHM202Physical Chemistry3-1-0-4CHM201
    2BIO202Genetics3-1-0-4BIO201
    2MAT202Linear Algebra3-1-0-4MAT201
    2CS202Database Systems3-1-0-4CS201
    3PHY301Quantum Mechanics3-1-0-4PHY202
    3CHM301Biophysical Chemistry3-1-0-4CHM202
    3BIO301Microbiology3-1-0-4BIO202
    3MAT301Probability and Statistics3-1-0-4MAT202
    3CS301Machine Learning3-1-0-4CS202
    3PHY302Optics3-1-0-4PHY301
    3CHM302Medicinal Chemistry3-1-0-4CHM301
    3BIO302Developmental Biology3-1-0-4BIO301
    3MAT302Mathematical Modeling3-1-0-4MAT301
    3CS302Web Development3-1-0-4CS301
    4PHY401Condensed Matter Physics3-1-0-4PHY302
    4CHM401Advanced Organic Chemistry3-1-0-4CHM302
    4BIO401Immunology3-1-0-4BIO302
    4MAT401Advanced Statistics3-1-0-4MAT302
    4CS401Artificial Intelligence3-1-0-4CS302
    4PHY402Atomic Physics3-1-0-4PHY401
    4CHM402Environmental Chemistry3-1-0-4CHM401
    4BIO402Cellular Pathology3-1-0-4BIO401
    4MAT402Operations Research3-1-0-4MAT401
    4CS402Software Engineering3-1-0-4CS401
    5PHY501Quantum Field Theory3-1-0-4PHY402
    5CHM501Pharmaceutical Chemistry3-1-0-4CHM402
    5BIO501Genomics3-1-0-4BIO402
    5MAT501Stochastic Processes3-1-0-4MAT402
    5CS501Deep Learning3-1-0-4CS402
    5PHY502Nuclear Physics3-1-0-4PHY501
    5CHM502Industrial Chemistry3-1-0-4CHM501
    5BIO502Neurobiology3-1-0-4BIO501
    5MAT502Time Series Analysis3-1-0-4MAT501
    5CS502Cloud Computing3-1-0-4CS501
    6PHY601Relativity3-1-0-4PHY502
    6CHM601Medicinal Plant Chemistry3-1-0-4CHM502
    6BIO601Biotechnology3-1-0-4BIO502
    6MAT601Mathematical Physics3-1-0-4MAT502
    6CS601Computer Vision3-1-0-4CS502
    6PHY602Particle Physics3-1-0-4PHY601
    6CHM602Green Chemistry3-1-0-4CHM601
    6BIO602Bioinformatics3-1-0-4BIO601
    6MAT602Advanced Calculus3-1-0-4MAT601
    6CS602Blockchain Technology3-1-0-4CS601
    7PHY701Advanced Quantum Mechanics3-1-0-4PHY602
    7CHM701Pharmacology3-1-0-4CHM602
    7BIO701Biomedical Engineering3-1-0-4BIO602
    7MAT701Applied Mathematics3-1-0-4MAT602
    7CS701Robotics3-1-0-4CS602
    7PHY702Advanced Optics3-1-0-4PHY701
    7CHM702Pharmaceutical Analysis3-1-0-4CHM701
    7BIO702Marine Biology3-1-0-4BIO701
    7MAT702Advanced Probability3-1-0-4MAT701
    7CS702Mobile Application Development3-1-0-4CS701
    8PHY801Superconductivity3-1-0-4PHY702
    8CHM801Drug Design3-1-0-4CHM702
    8BIO801Conservation Biology3-1-0-4BIO702
    8MAT801Mathematical Modeling in Science3-1-0-4MAT702
    8CS801Internet of Things3-1-0-4CS702
    8PHY802Advanced Nuclear Physics3-1-0-4PHY801
    8CHM802Environmental Impact Assessment3-1-0-4CHM801
    8BIO802Ecology and Evolution3-1-0-4BIO801
    8MAT802Computational Science3-1-0-4MAT801
    8CS802Advanced Software Engineering3-1-0-4CS801

    Advanced Departmental Electives

    Advanced departmental electives in the Bachelor of Science program at Sri Nagarjuna Arts And Science College Prakasam offer students the opportunity to explore specialized areas of interest and develop expertise in emerging fields. These courses are designed to provide in-depth knowledge and practical skills that are essential for advanced research and industry applications.

    Biotechnology is a core elective that delves into the application of biological principles to develop new technologies and products. Students study topics such as genetic engineering, bioprocessing, and bioinformatics, gaining hands-on experience in laboratory techniques and research methodologies. The course includes practical sessions in molecular biology, cell culture, and biotechnology product development, preparing students for careers in biotech companies, research institutions, and regulatory agencies.

    Environmental Chemistry focuses on the chemical processes that occur in natural environments and their impact on ecosystems. Students explore topics such as pollution chemistry, environmental monitoring, and sustainable chemical practices. The course includes laboratory sessions in environmental analysis, toxicology, and pollution control, providing students with practical skills in environmental assessment and remediation.

    Computational Physics integrates mathematical modeling with computational methods to solve complex physics problems. Students study numerical methods, simulation techniques, and data analysis, gaining proficiency in programming languages such as Python and MATLAB. The course includes projects in quantum mechanics, fluid dynamics, and materials science, preparing students for careers in computational research and engineering.

    Marine Biology explores the diverse ecosystems and organisms found in marine environments. Students study topics such as marine ecology, oceanography, and conservation biology, with fieldwork and laboratory sessions in marine research. The course includes practical training in marine sampling, data collection, and research methodology, preparing students for careers in marine research, conservation, and policy.

    Pharmacology focuses on the study of drugs and their interactions with biological systems. Students explore topics such as drug discovery, pharmacokinetics, and toxicology, gaining knowledge in pharmaceutical research and development. The course includes laboratory sessions in drug analysis, toxicology testing, and clinical pharmacology, preparing students for careers in pharmaceutical companies, regulatory agencies, and research institutions.

    Biomedical Engineering combines principles of engineering with biological sciences to develop medical devices and technologies. Students study topics such as biomaterials, medical imaging, and biomechanics, gaining skills in design and development of medical solutions. The course includes laboratory sessions in biomedical instrumentation, prosthetics, and medical device testing, preparing students for careers in medical technology and healthcare innovation.

    Advanced Mathematics provides a deeper understanding of mathematical concepts and their applications in science and engineering. Students study topics such as advanced calculus, differential equations, and mathematical modeling, gaining skills in abstract reasoning and problem-solving. The course includes practical applications in physics, engineering, and data science, preparing students for careers in research, academia, and industry.

    Data Science focuses on the extraction of knowledge and insights from large datasets. Students study topics such as machine learning, statistical analysis, and data visualization, gaining proficiency in tools and techniques used in data science. The course includes projects in predictive modeling, data mining, and big data analytics, preparing students for careers in data analysis, artificial intelligence, and business intelligence.

    Quantum Mechanics explores the fundamental principles of quantum physics and their applications in modern technology. Students study topics such as quantum states, quantum computing, and quantum field theory, gaining understanding of quantum phenomena and their practical implications. The course includes laboratory sessions in quantum experiments and simulations, preparing students for careers in quantum research and technology development.

    Green Chemistry emphasizes the design of chemical processes that reduce or eliminate the use of hazardous substances. Students study topics such as sustainable synthesis, waste reduction, and environmental impact assessment, gaining knowledge in eco-friendly chemical practices. The course includes laboratory sessions in green synthesis, environmental monitoring, and sustainable process design, preparing students for careers in environmental chemistry and sustainable technology.

    Project-Based Learning Philosophy

    The Bachelor of Science program at Sri Nagarjuna Arts And Science College Prakasam emphasizes project-based learning as a cornerstone of its educational approach. This methodology is designed to foster critical thinking, innovation, and practical application of scientific knowledge.

    Project-based learning begins in the early semesters with mini-projects that allow students to apply fundamental concepts in real-world contexts. These projects are designed to be collaborative, encouraging students to work in teams and develop communication and leadership skills. The mini-projects are typically conducted in small groups of 3-5 students and are supervised by faculty mentors who guide students through the research process.

    The scope of these projects ranges from simple laboratory experiments to more complex investigations that require students to design and execute their own research protocols. Students are encouraged to select topics that align with their interests and career goals, ensuring that the learning experience is both meaningful and relevant.

    The evaluation criteria for mini-projects include the clarity of the research question, the methodology employed, the quality of data collection and analysis, and the presentation of findings. Students are assessed on their ability to work independently, collaborate effectively, and communicate their results clearly.

    The final-year thesis or capstone project represents the culmination of the student's academic journey. This project requires students to conduct original research, often in collaboration with faculty members or industry partners. The capstone project is a significant undertaking that involves extensive literature review, experimental design, data collection, and analysis.

    Students are guided through the process of selecting a topic, developing a research proposal, and conducting the research under the supervision of a faculty mentor. The final project is presented to a panel of faculty members and industry experts, who evaluate the student's ability to synthesize knowledge, apply scientific methods, and communicate findings effectively.

    The program also encourages students to participate in external research competitions and conferences, where they can present their work and gain exposure to the broader scientific community. This approach not only enhances the learning experience but also prepares students for future careers in research, industry, and academia.