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

    Duration

    4 Years

    Bachelor Of Science

    Sree Venkateswara Degree College Nellore
    Duration
    4 Years
    Bachelor Of Science UG OFFLINE

    Duration

    4 Years

    Bachelor Of Science

    Sree Venkateswara Degree College Nellore
    Duration
    Apply

    Fees

    ₹1,20,000

    Placement

    92.0%

    Avg Package

    ₹7,50,000

    Highest Package

    ₹15,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Bachelor Of Science
    UG
    OFFLINE

    Fees

    ₹1,20,000

    Placement

    92.0%

    Avg Package

    ₹7,50,000

    Highest Package

    ₹15,00,000

    Seats

    120

    Students

    1,200

    ApplyCollege

    Seats

    120

    Students

    1,200

    Curriculum

    Course Structure Overview

    The Bachelor of Science program at Sree Venkateswara Degree College Nellore is structured over eight semesters, with each semester consisting of core courses, departmental electives, science electives, and laboratory sessions. The curriculum is designed to provide a balanced mix of theoretical knowledge and practical application, ensuring that students develop both analytical and hands-on skills.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    1BS101Mathematics I3-1-0-4-
    1BS102Physics I3-1-0-4-
    1BS103Chemistry I3-1-0-4-
    1BS104Biology I3-1-0-4-
    1BS105Computer Fundamentals2-0-2-3-
    1BS106English Communication2-0-0-2-
    1BS107Science Lab I0-0-3-1-
    2BS201Mathematics II3-1-0-4BS101
    2BS202Physics II3-1-0-4BS102
    2BS203Chemistry II3-1-0-4BS103
    2BS204Biology II3-1-0-4BS104
    2BS205Programming Fundamentals2-0-2-3BS105
    2BS206Science Lab II0-0-3-1BS107
    3BS301Mathematics III3-1-0-4BS201
    3BS302Physics III3-1-0-4BS202
    3BS303Chemistry III3-1-0-4BS203
    3BS304Biology III3-1-0-4BS204
    3BS305Statistics I3-0-0-3BS201
    3BS306Science Lab III0-0-3-1BS206
    4BS401Mathematics IV3-1-0-4BS301
    4BS402Physics IV3-1-0-4BS302
    4BS403Chemistry IV3-1-0-4BS303
    4BS404Biology IV3-1-0-4BS304
    4BS405Statistics II3-0-0-3BS305
    4BS406Science Lab IV0-0-3-1BS306
    5BS501Advanced Mathematics3-1-0-4BS401
    5BS502Quantum Physics3-1-0-4BS402
    5BS503Organic Chemistry3-1-0-4BS403
    5BS504Cell Biology3-1-0-4BS404
    5BS505Data Analysis3-0-0-3BS405
    5BS506Science Lab V0-0-3-1BS406
    6BS601Advanced Physics3-1-0-4BS501
    6BS602Physical Chemistry3-1-0-4BS503
    6BS603Genetics3-1-0-4BS504
    6BS604Ecology3-1-0-4BS504
    6BS605Machine Learning3-0-0-3BS505
    6BS606Science Lab VI0-0-3-1BS506
    7BS701Research Methodology3-1-0-4BS601
    7BS702Biotechnology3-1-0-4BS603
    7BS703Environmental Science3-1-0-4BS604
    7BS704Advanced Data Science3-0-0-3BS605
    7BS705Science Lab VII0-0-3-1BS606
    8BS801Capstone Project0-0-6-6BS701
    8BS802Final Thesis0-0-3-3BS701
    8BS803Science Lab VIII0-0-3-1BS705

    Advanced Departmental Elective Courses

    Advanced departmental electives are designed to provide students with in-depth knowledge in specialized areas of science. These courses are typically offered in the later semesters and are tailored to align with the interests and career goals of students.

    Advanced Mathematics

    This course delves into advanced mathematical concepts and their applications in science and engineering. Students explore topics such as differential equations, vector calculus, and numerical methods. The course emphasizes problem-solving techniques and computational modeling, preparing students for research and advanced study in mathematics and related fields.

    Quantum Physics

    Quantum Physics is a fundamental course that introduces students to the principles of quantum mechanics and their applications. The course covers wave-particle duality, quantum states, and quantum entanglement. Students engage in computational exercises and experiments that illustrate quantum phenomena, enhancing their understanding of modern physics.

    Organic Chemistry

    This course provides a comprehensive study of organic compounds, their structures, properties, and reactions. Students learn about functional groups, stereochemistry, and reaction mechanisms. The course includes laboratory sessions that allow students to synthesize and analyze organic compounds, developing practical skills in chemical research.

    Cell Biology

    Cell Biology explores the structure and function of cells and cellular processes. Students study cell organelles, membrane dynamics, and cellular signaling pathways. The course includes laboratory work that provides hands-on experience in microscopy, cell culture, and molecular biology techniques.

    Data Analysis

    Data Analysis focuses on statistical methods and data interpretation in scientific research. Students learn about descriptive statistics, hypothesis testing, and regression analysis. The course emphasizes the use of software tools for data visualization and modeling, preparing students for careers in data science and research.

    Advanced Physics

    This course builds upon foundational physics concepts, introducing students to advanced topics such as thermodynamics, electromagnetism, and optics. Students engage in laboratory experiments and computational modeling to understand complex physical phenomena and their applications.

    Physical Chemistry

    Physical Chemistry explores the physical principles underlying chemical processes. Students study thermodynamics, kinetics, and quantum chemistry. The course includes laboratory sessions that involve spectroscopy, calorimetry, and other analytical techniques.

    Genetics

    This course provides an in-depth study of genetic principles and their applications in biology and medicine. Students learn about gene expression, genetic disorders, and biotechnology applications. The course includes laboratory work in molecular genetics and bioinformatics.

    Ecology

    Ecology examines the relationships between organisms and their environment. Students study ecosystems, biodiversity, and conservation strategies. The course includes fieldwork and research projects that apply ecological principles to real-world problems.

    Machine Learning

    Machine Learning introduces students to algorithms and techniques for artificial intelligence and data analysis. Students learn about supervised and unsupervised learning, neural networks, and deep learning. The course emphasizes practical implementation and application in scientific research.

    Research Methodology

    Research Methodology provides students with the skills and knowledge needed for scientific research. The course covers experimental design, data collection, and analysis techniques. Students learn about scientific writing, ethics, and collaboration in research.

    Biotechnology

    This course explores the application of biological principles in technology and industry. Students study genetic engineering, bioprocessing, and bioinformatics. The course includes laboratory sessions that involve biotechnology research and development.

    Environmental Science

    Environmental Science addresses contemporary issues in environmental protection and sustainability. Students study pollution control, climate change, and conservation strategies. The course includes fieldwork and research projects that apply environmental science principles to real-world challenges.

    Advanced Data Science

    Advanced Data Science focuses on sophisticated methods for data analysis and interpretation. Students learn about big data, predictive modeling, and advanced statistical techniques. The course emphasizes the use of software tools for data science applications.

    Capstone Project

    The Capstone Project is a comprehensive research experience that integrates knowledge from multiple disciplines. Students work on a research problem under faculty supervision, developing skills in project planning, data analysis, and scientific communication.

    Project-Based Learning Philosophy

    The Bachelor of Science program at Sree Venkateswara Degree College Nellore emphasizes project-based learning as a core component of the curriculum. This approach encourages students to apply theoretical knowledge to real-world problems, fostering critical thinking and innovation.

    Mini-projects are assigned in the earlier semesters, providing students with opportunities to explore specific topics in depth. These projects are typically completed in groups and involve research, experimentation, and presentation. Faculty members guide students through the project process, offering feedback and support.

    The final-year thesis or capstone project is a significant component of the program. Students select a research topic based on their interests and career goals, working closely with a faculty mentor. The project involves extensive research, data collection, and analysis, culminating in a written thesis and oral presentation.

    Students are encouraged to choose projects that align with their specialization and career aspirations. The selection process involves discussions with faculty mentors, who help students identify suitable research topics and develop project proposals. The program provides resources and support for project development, ensuring that students can successfully complete their research.