Bangalore Central Campus

Bachelor of Science (Physics, Chemistry, Mathematics/Honours/Honours
with Research)

Open from: 08-May-2026 | Open until: 26-May-2026

Impactful Research Comprehensive Understanding of Physics International Publications International Placements Laboratory & Experimental Skills Interdisciplinary Aspects
6
Semester
2
Specialisations
3 Yrs
Duration
Top 50
B-School India
Applications OpenUntil 26-May-2026
2
Specializations
6
Semesters
Programme Overview

About the Programme

The Bachelor of Science programme in Physics, Chemistry, and Mathematics at CHRIST (Deemed to be University) is designed to provide students with a strong and balanced foundation across the three core disciplines of science. Students gain a solid foundation in core science concepts, practical skills, research skills, and technology integration, preparing them for careers in physics and allied industries. The curriculum encourages interdisciplinary training, teamwork, and hands-on learning, upskilling with AI integration, and provides a strong foundation for success in the ever-evolving field of science. Through a carefully structured blend of coursework, practical sessions, projects, and skill enhancement components, the programme nurtures scientific thinking, problem-solving ability, and research aptitude.

Programme Focus
• Physics: Development of a deep understanding of physics concepts, experimental techniques, and applications in emerging areas of science and technology.
• Chemistry: Comprehensive coverage of physical, organic, and inorganic chemistry with strong laboratory training, enabling students to understand matter, materials, and chemical processes.
• Mathematics: Strong grounding in mathematical methods, logical reasoning, and quantitative techniques essential for modeling, analysis, and problem-solving in physical sciences.
 

Undergraduate Research Immersion Programme (UGRIP)

Unlock a brighter future with a solid foundation in research for your chosen career or advanced academic pursuits

A Modern Analytical Technique

The use of advanced, computer-driven instrumentation and high-precision methods to detect, identify, and quantify the physical and chemical properties of materials

Interdisciplinary Training

Combining the fundamental principles, methods, and analytical tools of physics with Chemistry and Mathematical fields to solve complex problems

Computer Skills for Physics

Using computer programming skill for data acquisition in laboratories, data visualization, and for documentation

Why at Bangalore Central Campus

Why Choose This Programme?

Holistic Foundation

A comprehensive, well-rounded education to integrate theoretical knowledge, practical experimentation, mathematical skills, and interdisciplinary understanding

Hands-On Laboratory Focus 

This approach prioritizes learning-by-doing to bridge the gap between abstract concepts and real-world phenomena

Research Opportunities for Students

Accelerated personal and professional growth. Gain early expertise in scientific research methods, critical thinking, and collaborative research—far ahead of typical undergraduates

Extracurricular and Professional Growth

It involves developing transferable skills such as coding, data analysis, and technical communication

 AI-integrated learning

Enhancing traditional physics education by embedding Artificial Intelligence (AI) tools, Machine Learning (ML) techniques, and data science methodologies into the curriculum

Professional approach

Strong focus on conceptual clarity, analytical thinking, and practical learning

Areas of Specialisation

Choose Your Track

Theoretical/Experimental Route

Passionate about fundamental physics, aiming to push the boundaries of knowledge through research

Industrial Route

Focuses on the practical application of physics principles to design, develop, and test technologies, with high demand in sectors like energy, defense, and electronics

Digital Science Route

Advanced computing, programming, and mathematical modeling to simulate complex physical systems and pioneer next-generation technologies like quantum computing

Learning Outcomes

What You Will Learn

Computer Skill for Physics: Gain proficiency in using computers for physics-related task
Problem Solving: Develop strong problem-solving abilities, a crucial skill
Comprehensive Chemical Foundation : Build a solid understanding of the foundational concepts in Physics.
AI-integrated learning, including exposure to machine learning models, data analysis tools, and computational methods applied to scientific problems
Computational Physics: Learn to apply computational techniques to solve Physics problems
Mathematical Proficiency: Develop strong mathematical skills to tackle complex Physics challenges
Interdisciplinary Training: Acquire competencies relevant to the evolving Physics and allied technology industry, preparing you for a versatile and dynamic career
Academic Curriculum

Programme Structure

The programme structure outlines the academic curriculum designed to provide a systematic progression of learning through core subjects, electives, and practical components across semesters, ensuring both theoretical understanding and skill development.

Semester 1 — Semester 1 & 2
COREMechanics Credits
Thermal Physics and Statistical Mechanics Credits
Electricity and Magnetism Credits
General Chemistry Credits
Inorganic Chemistry-I: Coordination Compounds and Environmental Credits
Chemistry Credits
Physical Chemistry-I: Fundamental concepts Credits
CORECore  |  ELECElective  |  SPEC Specialisation  |  AEC Ability Enhancement Course  |  SEC Skill Enhancement Course  |  DSE Discipline Specific Elective  |  VAC Value Added Course  |  MDCMultidisciplinary Course
Semester 3 — Semester 3 & 4
Quantum Physics Credits
Astrophysics Credits
Organic chemistry-I: Monofunctional Compounds Credits
ANALYTICAL CHEMISTRY-I: FUNDAMENTAL PRINCIPLES Credits
ORGANIC CHEMISTRY-II: Fundamentals and Applications Credits
CORECore  |  ELECElective  |  SPEC Specialisation  |  AEC Ability Enhancement Course  |  SEC Skill Enhancement Course  |  DSE Discipline Specific Elective  |  VAC Value Added Course  |  MDCMultidisciplinary Course
Semester 5 — Semester 5 & 6
Renewable Energy Credits
Nuclear and Particle Physics Credits
Project Credits
Classical Mechanics Credits
Organic Chemistry-III: Stereochemistry and Reaction Credits
Mechanisms Credits
Physical Chemistry-II: Electrochemistry and Spectroscopy Credits
Inorganic Chemistry-II: Bioinorganic and Organometallic Credits
Compounds Credits
Inorganic Chemistry-III: Industrial Materials and Environment Credits
CORECore  |  ELECElective  |  SPEC Specialisation  |  AEC Ability Enhancement Course  |  SEC Skill Enhancement Course  |  DSE Discipline Specific Elective  |  VAC Value Added Course  |  MDCMultidisciplinary Course
Admissions

Eligibility & Fee Structure

Eligibility Criteria
Fee Structure (Indicative)
After Graduation

Career Paths

Laboratory Technician
Research Assistant
Scientific Data Analyst
Quality Control (QC) Analyst
Scientific Instrumentation Assistant
Renewable Energy Technician
Semiconductor Industry Technician
Science Educator / Tutor
Environmental Science Assistant
Computational Physics / Simulation Assistant
Medical Equipment Technician
Electronics Technician
Personalised Path

Your Career Roadmap

Select a specialisation track to explore the learning journey and career outcomes tailored to your chosen domain.

The Theoretical/Experimental Route

Sem 1-2 : Build Strong Foundations
Develop mathematical thinking, Learn problem-solving deeply, Understand derivations and Improve conceptual clarity

Sem 3-4 : Strengthen Core Physics and Mathematics Mathematical modeling, Solving numerical problems, Understanding physical intuition, Start computational physics

Sem 5-6 : Specialization and Research Preparation Research-oriented thinking, Reading scientific papers, Advanced mathematics, Competitive exam preparation

The Theoretical/Experimental Route
Theoretical/Experimental Route Track — Career Outcomes
Research Scientist Semiconductor Industry Specialist Computational Physicist Laboratory Expert Physics Educator
Industrial Route

Sem 1-2 : Build Core Technical Foundations
Develop technical problem-solving, Understand practical applications of physics, Build discipline in lab work, Improve communication skills

Sem 3-4 : Develop Industry-Oriented Skills
Applied physics understanding, Instrumentation knowledge, Technical software exposure Team-based project work

Sem 5-6 : Become Job-Ready for Industry
Specialization choice, Industry networking, High-Value Skills to Learn Career Outcomes 

Industrial Route
Industrial Route Track — Career Outcomes
Technical Support Engineer Instrumentation Engineer Data Analyst Scientific Software Associate Manufacturing & QC Analyst
Digital Science Route

Sem 1-2 : Build Foundations in Physics and Programming
Develop logical thinking, Build coding discipline, Strengthen mathematics, Learn
computational problem-solving
 
Sem 3-4 : Develop Computational & Data Skills
Scientific programming, Data analysis, Numerical methods, Computational modeling

 Sem 5-6 : Specialization and Career Preparation
 Industry-ready coding, AI/ML basics, Scientific computing specialization, Research or tech career preparation

Digital Science Route
Digital Science Route Track — Career Outcomes
AI & Machine Learning Engineer Scientific Programmer Simulation &\r\nModelling Engineer Space-tech and satellite applications Research Assistant in labs or\r\nuniversities
From the Department

Message from the HOD

HOD Name
Dr Manoj B
Physics and Electronics)
Bangalore Central Campus

The Department of Physics and Electronics, CHRIST (Deemed to be University), established in 1969, has consistently set benchmarks in quality higher education through its well-equipped classrooms and advanced experimental laboratories. The Department is supported by a team of well-qualified and highly experienced faculty members who are actively engaged in research across frontier areas such as experimental condensed matter physics, materials science, and astrophysics.

Research in materials and energy sciences focuses on the development of nanomaterials, thin films, and polymers, with applications spanning solar cells, hydrogen energy systems, batteries, radiation shieldi

Read more...

Physics and Electronics, Bangalore Central Campus
×

Message from the HOD

The Department of Physics and Electronics, CHRIST (Deemed to be University), established in 1969, has consistently set benchmarks in quality higher education through its well-equipped classrooms and advanced experimental laboratories. The Department is supported by a team of well-qualified and highly experienced faculty members who are actively engaged in research across frontier areas such as experimental condensed matter physics, materials science, and astrophysics.

Research in materials and energy sciences focuses on the development of nanomaterials, thin films, and polymers, with applications spanning solar cells, hydrogen energy systems, batteries, radiation shielding, biomedical technologies, display devices, optoelectronics, water purification, and photodetectors. High-quality research in astrophysics encompasses areas ranging from stellar astrophysics to cosmology, with focused studies in X-ray astronomy, galactic astrophysics, and investigations of the dark universe.

Faculty members have secured several external research grants from national funding agencies, including DST, DST-FIST, SERB, ISRO, BRNS, and SPARC, enabling the establishment of high-quality research infrastructure in cutting-edge domains. The Department houses a state-of-the-art Central Instrumentation Facility that supports energy and environmental research, thin-film growth, and nanomaterial synthesis. Advanced facilities such as X-ray diffractometers, electron microscopy, UV–Visible spectrometers, fluorometers, microwave synthesizers, solar simulators, and high-performance computational resources play a pivotal role in sustaining an excellent research culture.

The Department is further strengthened by its two Centres of Excellence, namely the Centre for Excellence in Astronomy and Astrophysics and the Centre for Advanced Materials Research, Innovation and Technology. These Centres function as dedicated hubs for advanced research, interdisciplinary collaboration, and innovation-driven academic activities. They facilitate focused research initiatives, promote national and international collaborations, and actively engage faculty members, research scholars, and students in cutting-edge research, thereby enhancing the Department’s research ecosystem and academic impact.
The Department maintains strong academic interactions with institutes, universities, and organizations within India and abroad through established collaborations, associateships, and Memoranda of Understanding (MoUs). Faculty members of the Department have published high-quality, high-impact research papers and patents in Scopus- and SCI-indexed journals, as well as other prestigious international publications. The Department regularly organizes expert talks, guest lectures, international, national, and regional conferences, quality improvement programmes on research and teaching themes, workshops, refresher courses, seminars, exhibitions, quiz programmes, Alumni talk and industry visits, thereby providing exposure to frontier developments in higher education and research.

The Department places strong emphasis on skill development and value addition through certificate programmes, interdisciplinary courses, internships, upskilling initiatives, and structured research programmes. Undergraduate and postgraduate students are actively involved in internal and externally funded research projects, including those supported by national fellowships, as an integral part of their curriculum. This comprehensive approach ensures a vibrant, research-oriented academic environment that equips students with both theoretical knowledge and practical competencies for future academic and professional pursuits.

“Department accentuates quality education with focus on research-inclusive learning, enabling students to find the best-suited possibilities for future careers.”

How to Join

Admission Process

1
Register
  • Register with your Email ID
  • Login to the Admission Portal
2
Apply Online
  • Fill the Application Form
  • Pay Application Fee
3
Entrance Test
  • Entrance Test (If Applicable)
  • Assessment
  • Interview
4
Result
  • Check login page for result
  • If selected, Offer Letter attached
5
Fee Payment
  • Pay Course Fee Online
  • Complete Admission Process
Ready to Apply?

Applications for the 2026 batch are open. Deadline: 26-May-2026.

CHRIST
(Deemed to be University)

Dharmaram College Post, Hosur Road, Bengaluru - 560029, Karnataka, India

Tel: +91 80 4012 9100 / 9600

Fax: +91 80 4012 9000

Email: mail@christuniversity.in

Web: https://www.christuniversity.in

Vision

EXCELLENCE AND SERVICE

Mission

CHRIST (Deemed to be University) is a nurturing ground for an individual's holistic development to make effective contribution to the society in a dynamic environment.

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