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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    3 Years

    Bachelor Of Science

    Kanumarla Rural Development And Educaiton Al Society Prakasam
    Duration
    3 Years
    Bachelor Of Science UG OFFLINE

    Duration

    3 Years

    Bachelor Of Science

    Kanumarla Rural Development And Educaiton Al Society Prakasam
    Duration
    Apply

    Fees

    ₹1,50,000

    Placement

    95.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    3 Years
    Bachelor Of Science
    UG
    OFFLINE

    Fees

    ₹1,50,000

    Placement

    95.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    1,200

    ApplyCollege

    Seats

    120

    Students

    1,200

    Curriculum

    Comprehensive Course Structure for Bachelor Of Science Program

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Pre-requisites
    1PHY101Introduction to Physics3-1-0-4-
    1CHE101Introduction to Chemistry3-1-0-4-
    1BIO101Introduction to Biology3-1-0-4-
    1MAT101Calculus I3-1-0-4-
    1MAT102Linear Algebra3-1-0-4-
    1PHY102Physics Laboratory0-0-3-1PHY101
    1CHE102Chemistry Laboratory0-0-3-1CHE101
    1BIO102Biology Laboratory0-0-3-1BIO101
    1MAT103Calculus II3-1-0-4MAT101
    2PHY201Classical Mechanics3-1-0-4PHY101
    2CHE201Organic Chemistry3-1-0-4CHE101
    2BIO201Genetics3-1-0-4BIO101
    2MAT201Differential Equations3-1-0-4MAT101
    2MAT202Probability and Statistics3-1-0-4MAT101
    2PHY202Modern Physics3-1-0-4PHY101
    2CHE202Inorganic Chemistry3-1-0-4CHE101
    2BIO202Cell Biology3-1-0-4BIO101
    2PHY203Physics Laboratory II0-0-3-1PHY102
    2CHE203Chemistry Laboratory II0-0-3-1CHE102
    2BIO203Biology Laboratory II0-0-3-1BIO102
    3PHY301Quantum Mechanics3-1-0-4PHY201
    3CHE301Physical Chemistry3-1-0-4CHE201
    3BIO301Molecular Biology3-1-0-4BIO201
    3MAT301Mathematical Methods3-1-0-4MAT201
    3MAT302Advanced Statistics3-1-0-4MAT202
    3PHY302Electromagnetism3-1-0-4PHY201
    3CHE302Chemical Kinetics3-1-0-4CHE201
    3BIO302Biotechnology3-1-0-4BIO201
    3PHY303Quantum Laboratory0-0-3-1PHY203
    3CHE303Chemistry Laboratory III0-0-3-1CHE203
    3BIO303Biology Laboratory III0-0-3-1BIO203
    4PHY401Thermodynamics3-1-0-4PHY201
    4CHE401Advanced Organic Chemistry3-1-0-4CHE301
    4BIO401Genomics3-1-0-4BIO301
    4MAT401Numerical Analysis3-1-0-4MAT301
    4MAT402Mathematical Modeling3-1-0-4MAT301
    4PHY402Optics3-1-0-4PHY201
    4CHE402Environmental Chemistry3-1-0-4CHE301
    4BIO402Ecology3-1-0-4BIO301
    4PHY403Modern Physics Laboratory0-0-3-1PHY303
    4CHE403Chemistry Laboratory IV0-0-3-1CHE303
    4BIO403Biology Laboratory IV0-0-3-1BIO303
    5PHY501Statistical Mechanics3-1-0-4PHY401
    5CHE501Industrial Chemistry3-1-0-4CHE401
    5BIO501Biostatistics3-1-0-4BIO401
    5MAT501Advanced Mathematical Methods3-1-0-4MAT401
    5MAT502Computational Mathematics3-1-0-4MAT401
    5PHY502Condensed Matter Physics3-1-0-4PHY401
    5CHE502Materials Chemistry3-1-0-4CHE401
    5BIO502Systems Biology3-1-0-4BIO401
    5PHY503Research Methods in Physics0-0-3-1PHY403
    5CHE503Research Methods in Chemistry0-0-3-1CHE403
    5BIO503Research Methods in Biology0-0-3-1BIO403
    6PHY601Advanced Quantum Mechanics3-1-0-4PHY501
    6CHE601Advanced Physical Chemistry3-1-0-4CHE501
    6BIO601Advanced Molecular Biology3-1-0-4BIO501
    6MAT601Advanced Mathematical Modeling3-1-0-4MAT501
    6MAT602Machine Learning3-1-0-4MAT502
    6PHY602Particle Physics3-1-0-4PHY501
    6CHE602Pharmaceutical Chemistry3-1-0-4CHE501
    6BIO602Advanced Biotechnology3-1-0-4BIO501
    6PHY603Advanced Physics Laboratory0-0-3-1PHY503
    6CHE603Advanced Chemistry Laboratory0-0-3-1CHE503
    6BIO603Advanced Biology Laboratory0-0-3-1BIO503
    7PHY701Research Project I0-0-6-6PHY603
    7CHE701Research Project II0-0-6-6CHE603
    7BIO701Research Project III0-0-6-6BIO603
    7MAT701Research Project IV0-0-6-6-
    7PHY702Research Project V0-0-6-6PHY701
    7CHE702Research Project VI0-0-6-6CHE701
    7BIO702Research Project VII0-0-6-6BIO701
    7MAT702Research Project VIII0-0-6-6MAT701
    8PHY801Final Year Thesis0-0-6-6PHY702
    8CHE801Final Year Thesis0-0-6-6CHE702
    8BIO801Final Year Thesis0-0-6-6BIO702
    8MAT801Final Year Thesis0-0-6-6MAT702

    Advanced Departmental Elective Courses

    The Bachelor of Science program at Kanumarla Rural Development And Educaiton Al Society Prakasam offers a wide range of advanced departmental elective courses that allow students to specialize in their chosen field of study. These courses are designed to provide students with in-depth knowledge and practical skills in their chosen area of interest. The following are some of the advanced departmental elective courses offered in the program:

    Quantum Mechanics

    The Quantum Mechanics course is designed to provide students with a comprehensive understanding of the fundamental principles of quantum mechanics and their applications in modern technology. The course covers topics such as wave-particle duality, Schrödinger equation, quantum states, and quantum measurement. Students will also learn about quantum computing and quantum information theory. The course includes laboratory sessions where students will perform experiments to understand the principles of quantum mechanics. The course is taught by Dr. Srinivas Reddy, a renowned expert in quantum mechanics and quantum computing.

    Organic Chemistry

    The Organic Chemistry course is designed to provide students with a deep understanding of the structure, properties, and reactions of organic compounds. The course covers topics such as stereochemistry, reaction mechanisms, and synthesis of organic compounds. Students will also learn about the applications of organic chemistry in pharmaceuticals and materials science. The course includes laboratory sessions where students will perform organic synthesis and characterization experiments. The course is taught by Dr. Priya Sharma, a leading expert in organic chemistry and nanotechnology.

    Genetics

    The Genetics course is designed to provide students with a comprehensive understanding of the principles of genetics and their applications in modern biology. The course covers topics such as Mendelian inheritance, molecular genetics, gene expression, and genetic engineering. Students will also learn about the applications of genetics in medicine and agriculture. The course includes laboratory sessions where students will perform genetic analysis and DNA sequencing experiments. The course is taught by Dr. Lakshmi Devi, a distinguished expert in molecular biology and genetics.

    Differential Equations

    The Differential Equations course is designed to provide students with a solid foundation in the theory and applications of differential equations. The course covers topics such as ordinary differential equations, partial differential equations, and their applications in physics and engineering. Students will also learn about numerical methods for solving differential equations. The course includes laboratory sessions where students will use computational tools to solve differential equations. The course is taught by Dr. Ramesh Kumar, a renowned expert in computational mathematics and algorithmic complexity.

    Probability and Statistics

    The Probability and Statistics course is designed to provide students with a comprehensive understanding of probability theory and statistical inference. The course covers topics such as probability distributions, hypothesis testing, regression analysis, and Bayesian inference. Students will also learn about the applications of statistics in data science and research. The course includes laboratory sessions where students will perform statistical analysis using software tools. The course is taught by Dr. Ramesh Kumar, a renowned expert in computational mathematics and algorithmic complexity.

    Cell Biology

    The Cell Biology course is designed to provide students with a comprehensive understanding of the structure and function of cells and their components. The course covers topics such as cell membrane, organelles, cell cycle, and cell signaling. Students will also learn about the applications of cell biology in medicine and biotechnology. The course includes laboratory sessions where students will perform cell culture and microscopy experiments. The course is taught by Dr. Lakshmi Devi, a distinguished expert in molecular biology and cell biology.

    Physical Chemistry

    The Physical Chemistry course is designed to provide students with a deep understanding of the physical principles underlying chemical processes. The course covers topics such as thermodynamics, kinetics, and quantum chemistry. Students will also learn about the applications of physical chemistry in materials science and nanotechnology. The course includes laboratory sessions where students will perform chemical analysis and spectroscopy experiments. The course is taught by Dr. Priya Sharma, a leading expert in physical chemistry and nanotechnology.

    Biotechnology

    The Biotechnology course is designed to provide students with a comprehensive understanding of the principles and applications of biotechnology. The course covers topics such as genetic engineering, recombinant DNA technology, and bioprocessing. Students will also learn about the applications of biotechnology in medicine, agriculture, and environmental science. The course includes laboratory sessions where students will perform biotechnology experiments and analyze data. The course is taught by Dr. Lakshmi Devi, a distinguished expert in molecular biology and biotechnology.

    Mathematical Methods

    The Mathematical Methods course is designed to provide students with a solid foundation in the mathematical tools and techniques used in scientific research. The course covers topics such as vector calculus, complex analysis, and linear algebra. Students will also learn about the applications of mathematical methods in physics and engineering. The course includes laboratory sessions where students will use computational tools to solve mathematical problems. The course is taught by Dr. Ramesh Kumar, a renowned expert in computational mathematics and algorithmic complexity.

    Advanced Statistics

    The Advanced Statistics course is designed to provide students with a comprehensive understanding of advanced statistical methods and their applications in research and industry. The course covers topics such as multivariate analysis, time series analysis, and machine learning. Students will also learn about the applications of advanced statistics in data science and artificial intelligence. The course includes laboratory sessions where students will perform advanced statistical analysis using software tools. The course is taught by Dr. Ramesh Kumar, a renowned expert in computational mathematics and algorithmic complexity.

    Electromagnetism

    The Electromagnetism course is designed to provide students with a comprehensive understanding of the principles of electromagnetism and their applications in modern technology. The course covers topics such as electric fields, magnetic fields, Maxwell's equations, and electromagnetic waves. Students will also learn about the applications of electromagnetism in telecommunications and energy systems. The course includes laboratory sessions where students will perform electromagnetic experiments and analyze data. The course is taught by Dr. Srinivas Reddy, a renowned expert in theoretical physics and electromagnetism.

    Chemical Kinetics

    The Chemical Kinetics course is designed to provide students with a deep understanding of the rates and mechanisms of chemical reactions. The course covers topics such as reaction rates, activation energy, and catalysis. Students will also learn about the applications of chemical kinetics in industrial processes and environmental science. The course includes laboratory sessions where students will perform kinetic analysis and reaction monitoring experiments. The course is taught by Dr. Priya Sharma, a leading expert in chemical kinetics and nanotechnology.

    Ecology

    The Ecology course is designed to provide students with a comprehensive understanding of the interactions between organisms and their environment. The course covers topics such as population dynamics, ecosystem structure, and conservation biology. Students will also learn about the applications of ecology in environmental management and policy. The course includes laboratory sessions where students will perform ecological surveys and data analysis. The course is taught by Dr. Anil Kumar, a leading expert in environmental science and climate change.

    Research Methods in Physics

    The Research Methods in Physics course is designed to provide students with a comprehensive understanding of the principles and practices of scientific research in physics. The course covers topics such as experimental design, data analysis, and scientific writing. Students will also learn about the ethical considerations in scientific research and the importance of reproducibility. The course includes laboratory sessions where students will conduct independent research projects. The course is taught by Dr. Srinivas Reddy, a renowned expert in theoretical physics and quantum computing.

    Research Methods in Chemistry

    The Research Methods in Chemistry course is designed to provide students with a comprehensive understanding of the principles and practices of scientific research in chemistry. The course covers topics such as experimental design, data analysis, and scientific writing. Students will also learn about the ethical considerations in scientific research and the importance of reproducibility. The course includes laboratory sessions where students will conduct independent research projects. The course is taught by Dr. Priya Sharma, a leading expert in organic chemistry and nanotechnology.

    Research Methods in Biology

    The Research Methods in Biology course is designed to provide students with a comprehensive understanding of the principles and practices of scientific research in biology. The course covers topics such as experimental design, data analysis, and scientific writing. Students will also learn about the ethical considerations in scientific research and the importance of reproducibility. The course includes laboratory sessions where students will conduct independent research projects. The course is taught by Dr. Lakshmi Devi, a distinguished expert in molecular biology and biotechnology.

    Project-Based Learning Philosophy

    The Bachelor of Science program at Kanumarla Rural Development And Educaiton Al Society Prakasam places a strong emphasis on project-based learning as a fundamental component of the educational experience. This approach is designed to foster critical thinking, problem-solving skills, and practical application of theoretical knowledge. The program's project-based learning philosophy is rooted in the belief that students learn best when they are actively engaged in solving real-world problems and conducting meaningful research.

    The program incorporates both mini-projects and a final-year thesis/capstone project as essential elements of the curriculum. The mini-projects are designed to be completed during the second and third years of the program, allowing students to apply the concepts learned in their coursework to practical situations. These projects are typically completed in small groups and are supervised by faculty members who provide guidance and mentorship throughout the process.

    The final-year thesis/capstone project is a significant undertaking that requires students to conduct original research or develop a comprehensive solution to a complex problem in their field of study. This project is typically completed in the final year of the program and serves as a culmination of the student's academic journey. The project is supervised by a faculty member who serves as the primary mentor, and students are encouraged to collaborate with other faculty members and researchers in their field.

    The evaluation criteria for these projects are designed to assess not only the technical quality of the work but also the student's ability to communicate their findings, work collaboratively, and demonstrate critical thinking. The projects are evaluated by a panel of faculty members and external experts, ensuring that the assessment is rigorous and comprehensive.

    Students are encouraged to select projects that align with their interests and career aspirations, and they are provided with resources and support to ensure their success. The program offers a range of research opportunities, including summer research programs, internships, and collaborations with industry partners, which provide students with exposure to real-world challenges and professional environments.

    The faculty members play a crucial role in the project-based learning process, providing mentorship, guidance, and feedback throughout the project development cycle. They are actively involved in helping students identify research topics, develop research proposals, and navigate the challenges that arise during the project process. The faculty members also provide students with access to cutting-edge research facilities and equipment, ensuring that they have the resources necessary to conduct high-quality research.

    The program's project-based learning approach is designed to prepare students for success in their future careers by developing their research skills, critical thinking abilities, and collaborative work ethic. The emphasis on practical application and real-world problem-solving ensures that graduates are well-prepared to contribute to their fields and make meaningful contributions to society.