Collegese

Welcome to Collegese! Sign in →

Collegese

    Search colleges and courses

    Search and navigate to colleges and courses

    Start your journey

    Ready to find your dream college?

    Join thousands of students making smarter education decisions.

    Watch How It WorksGet Started

    Discover

    Browse & filter colleges

    Compare

    Side-by-side analysis

    Explore

    Detailed course info

    Collegese

    India's education marketplace helping students discover the right colleges, compare courses, and build careers they deserve.

    © 2026 Collegese. All rights reserved. A product of Nxthub Consulting Pvt. Ltd.

    Apply

    Scholarships & exams

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

    Duration

    4 Years

    Bachelor Of Science

    Mahathi Degree College Visakhapatnam
    Duration
    4 Years
    Bachelor Of Science UG OFFLINE

    Duration

    4 Years

    Bachelor Of Science

    Mahathi Degree College Visakhapatnam
    Duration
    Apply

    Fees

    ₹2,50,000

    Placement

    92.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Bachelor Of Science
    UG
    OFFLINE

    Fees

    ₹2,50,000

    Placement

    92.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    350

    ApplyCollege

    Seats

    120

    Students

    350

    Curriculum

    Comprehensive Course Structure and Curriculum

    The Bachelor of Science program at Mahathi Degree College Visakhapatnam is designed to provide students with a comprehensive education in scientific disciplines, preparing them for careers in research, industry, and academia. The curriculum is structured to build upon foundational knowledge while offering opportunities for specialization and advanced research.

    Year 1: Foundation Year

    The first year of the program focuses on building a strong foundation in core scientific disciplines. Students are introduced to fundamental concepts in physics, chemistry, biology, and mathematics. The curriculum emphasizes the development of critical thinking skills and scientific methodology.

    Year 2: Core Disciplines

    During the second year, students begin to specialize in their chosen area of study. The curriculum becomes more focused, with advanced courses in their major discipline. Students are introduced to more complex theoretical concepts and practical applications.

    Year 3: Advanced Specialization

    The third year is characterized by advanced coursework and the beginning of specialized research. Students take courses in their major discipline that delve deeper into theoretical and practical aspects of their field.

    Year 4: Capstone and Research

    The final year is dedicated to capstone projects and advanced research. Students work on comprehensive research projects that address significant scientific problems.

    Course Structure Overview

    SemesterCourse CodeCourse TitleCourse TypeL-T-P-CPrerequisites
    1SC101General Physics ICore3-1-0-4-
    1SC102General Chemistry ICore3-1-0-4-
    1SC103General Biology ICore3-1-0-4-
    1SC104Mathematics ICore3-1-0-4-
    1SC105Introduction to Scientific ComputingCore2-0-2-3-
    1SC106Science Lab ILab0-0-3-1-
    2SC201General Physics IICore3-1-0-4SC101
    2SC202General Chemistry IICore3-1-0-4SC102
    2SC203General Biology IICore3-1-0-4SC103
    2SC204Mathematics IICore3-1-0-4SC104
    2SC205Statistics and ProbabilityCore3-1-0-4SC104
    2SC206Science Lab IILab0-0-3-1SC106
    3SC301Organic ChemistryCore3-1-0-4SC202
    3SC302Physical ChemistryCore3-1-0-4SC202
    3SC303Cell BiologyCore3-1-0-4SC203
    3SC304GeneticsCore3-1-0-4SC203
    3SC305ThermodynamicsCore3-1-0-4SC201
    3SC306Science Lab IIILab0-0-3-1SC206
    4SC401Quantum MechanicsCore3-1-0-4SC201
    4SC402Instrumental AnalysisCore3-1-0-4SC302
    4SC403MicrobiologyCore3-1-0-4SC203
    4SC404Developmental BiologyCore3-1-0-4SC303
    4SC405Electromagnetic TheoryCore3-1-0-4SC201
    4SC406Science Lab IVLab0-0-3-1SC306
    5SC501Advanced Organic ChemistryCore3-1-0-4SC301
    5SC502Advanced Physical ChemistryCore3-1-0-4SC302
    5SC503Advanced Cell BiologyCore3-1-0-4SC303
    5SC504Advanced GeneticsCore3-1-0-4SC304
    5SC505Advanced ThermodynamicsCore3-1-0-4SC305
    5SC506Science Lab VLab0-0-3-1SC406
    6SC601Advanced Quantum MechanicsCore3-1-0-4SC401
    6SC602Advanced Instrumental AnalysisCore3-1-0-4SC402
    6SC603Advanced MicrobiologyCore3-1-0-4SC403
    6SC604Advanced Developmental BiologyCore3-1-0-4SC404
    6SC605Advanced Electromagnetic TheoryCore3-1-0-4SC405
    6SC606Science Lab VILab0-0-3-1SC506
    7SC701Special Topics in BiochemistryElective3-1-0-4SC501
    7SC702Special Topics in Environmental ScienceElective3-1-0-4SC502
    7SC703Special Topics in Computational ScienceElective3-1-0-4SC503
    7SC704Special Topics in Applied MathematicsElective3-1-0-4SC504
    7SC705Special Topics in Materials ScienceElective3-1-0-4SC505
    7SC706Science Lab VIILab0-0-3-1SC606
    8SC801Special Topics in NeuroscienceElective3-1-0-4SC601
    8SC802Special Topics in BiotechnologyElective3-1-0-4SC602
    8SC803Special Topics in Mathematical ModelingElective3-1-0-4SC603
    8SC804Special Topics in PharmacologyElective3-1-0-4SC604
    8SC805Special Topics in Marine BiologyElective3-1-0-4SC605
    8SC806Science Lab VIIILab0-0-3-1SC706

    Advanced Departmental Elective Courses

    Advanced departmental elective courses in the Bachelor of Science program at Mahathi Degree College Visakhapatnam are designed to provide students with specialized knowledge and skills in their chosen field. These courses are offered in the final two years of the program and are intended to prepare students for advanced research and professional opportunities.

    Advanced Organic Chemistry

    This course provides students with an in-depth understanding of the structure, properties, and reactivity of organic compounds. Students will study advanced topics such as stereochemistry, reaction mechanisms, and synthetic strategies. The course emphasizes the application of organic chemistry principles to real-world problems, including drug design and materials science. Students will also gain hands-on experience with advanced laboratory techniques and instrumentation.

    Advanced Physical Chemistry

    This course explores the fundamental principles of physical chemistry at an advanced level. Students will study topics such as quantum mechanics, thermodynamics, and kinetics in greater depth. The course emphasizes the application of physical chemistry principles to understanding complex systems, including biological processes and materials science. Students will also gain experience with advanced computational methods and data analysis techniques.

    Advanced Cell Biology

    This course provides students with an in-depth understanding of cellular processes and mechanisms. Students will study topics such as cell signaling, gene regulation, and cellular metabolism. The course emphasizes the application of cell biology principles to understanding disease mechanisms and developing therapeutic strategies. Students will also gain hands-on experience with advanced laboratory techniques and instrumentation.

    Advanced Genetics

    This course explores advanced topics in genetics, including gene expression, genetic engineering, and genomics. Students will study the molecular mechanisms underlying genetic disorders and the application of genetic principles to biotechnology and medicine. The course emphasizes the application of genetic principles to real-world problems, including personalized medicine and genetic therapy.

    Advanced Thermodynamics

    This course provides students with an in-depth understanding of thermodynamic principles and their applications. Students will study topics such as thermodynamic cycles, phase equilibrium, and statistical thermodynamics. The course emphasizes the application of thermodynamic principles to understanding complex systems, including energy conversion and environmental processes. Students will also gain experience with advanced computational methods and data analysis techniques.

    Advanced Quantum Mechanics

    This course explores the fundamental principles of quantum mechanics at an advanced level. Students will study topics such as quantum states, operators, and applications to atomic and molecular systems. The course emphasizes the application of quantum mechanics principles to understanding complex systems, including materials science and quantum computing. Students will also gain experience with advanced computational methods and data analysis techniques.

    Advanced Instrumental Analysis

    This course provides students with an in-depth understanding of advanced analytical techniques and instrumentation. Students will study topics such as spectroscopy, chromatography, and mass spectrometry. The course emphasizes the application of instrumental analysis principles to real-world problems, including environmental monitoring and pharmaceutical analysis. Students will also gain hands-on experience with advanced laboratory techniques and instrumentation.

    Advanced Microbiology

    This course explores advanced topics in microbiology, including microbial physiology, genetics, and ecology. Students will study the application of microbiology principles to biotechnology and medicine. The course emphasizes the application of microbiology principles to real-world problems, including infectious disease and environmental remediation. Students will also gain hands-on experience with advanced laboratory techniques and instrumentation.

    Advanced Developmental Biology

    This course provides students with an in-depth understanding of developmental processes and mechanisms. Students will study topics such as embryogenesis, cell differentiation, and organogenesis. The course emphasizes the application of developmental biology principles to understanding disease mechanisms and developing therapeutic strategies. Students will also gain hands-on experience with advanced laboratory techniques and instrumentation.

    Advanced Electromagnetic Theory

    This course explores the fundamental principles of electromagnetic theory at an advanced level. Students will study topics such as Maxwell's equations, wave propagation, and electromagnetic fields. The course emphasizes the application of electromagnetic theory principles to understanding complex systems, including communication systems and energy conversion. Students will also gain experience with advanced computational methods and data analysis techniques.

    Project-Based Learning Approach

    The Bachelor of Science program at Mahathi Degree College Visakhapatnam emphasizes project-based learning as a core component of the educational experience. This approach is designed to provide students with hands-on experience in scientific research and problem-solving, preparing them for careers in research, industry, and academia.

    Mini-Projects

    Mini-projects are an integral part of the program's curriculum and are conducted during the second and third years. These projects are designed to provide students with practical experience in scientific research and problem-solving. Students work in small groups to investigate a specific scientific question or problem, applying the theoretical knowledge they have acquired in their coursework.

    Mini-projects are typically completed over a period of 4-6 weeks and are evaluated based on the quality of the research, the clarity of the presentation, and the effectiveness of the team collaboration. Students are required to submit a project report and present their findings to their peers and faculty members.

    The mini-project experience provides students with valuable skills in scientific research, data analysis, and communication. It also helps students to develop their problem-solving abilities and to work effectively in teams. The projects are supervised by faculty members who provide guidance and support throughout the research process.

    Final-Year Thesis/Capstone Project

    The final-year thesis or capstone project is the culmination of the Bachelor of Science program at Mahathi Degree College Visakhapatnam. This project is designed to provide students with an opportunity to conduct independent research in their chosen field and to demonstrate their mastery of scientific principles and methodologies.

    Students are required to select a research topic in consultation with their faculty advisor and to conduct original research under their supervision. The project involves a significant amount of independent study, data collection, and analysis. Students are expected to produce a comprehensive research report and to present their findings to a faculty committee.

    The capstone project is evaluated based on the quality of the research, the clarity of the presentation, and the effectiveness of the student's scientific reasoning. The project provides students with valuable experience in scientific research and prepares them for graduate studies or professional careers in science.

    Students are encouraged to pursue research projects that address current scientific challenges or that have practical applications. The program's faculty members are actively involved in research and provide students with opportunities to participate in ongoing projects. Students also have the opportunity to present their research at national and international conferences.

    Project Selection and Faculty Mentorship

    The process of selecting a research project and finding a faculty mentor is an important part of the project-based learning experience. Students are encouraged to explore their interests and to identify research topics that align with their career goals.

    Faculty members play a crucial role in guiding students through the research process. They provide students with advice on research topics, help students to develop research proposals, and provide ongoing support throughout the research process. Faculty members also serve as mentors for students' professional development and career planning.

    The program maintains a database of research topics and faculty expertise to help students find appropriate mentors and projects. Students are encouraged to attend research seminars and conferences to learn about current research trends and to network with faculty members and other researchers.