• 07592234553
  • heggcvid@mp.gov.in
  • Vidisha, (M.P) 464001

B Sc. Ist year

Paper: Mechanics and General Properties of Matter

Course learning Outcome:-

  • The course would empower the student to develop the idea about the behavior of physical bodies.
  • It will provide the basic concepts related to the motion of all the objects around us in daily life.
  • The students would be able to build foundation to various applied field in science and technology in the field of mechanical engineering.
  • The students will acquire the knowledge of basic mathematical methods to solve the various problems in physics.
  • The students will be able to understand the relativistic effect and relation between energy and mass.

 

 ************************************************************************************************************************************************************************

 

B Sc. Ist year

Paper: Thermodynamics and Statistical Physics

Course learning Outcome:-

  • The course would enable the students to understand the basic Physics of heat and temperature in relation to energy, work, radiation and matter.
  • The students are expected to learn” how laws of thermodynamics are used in a heat engine to transform heat into work”.
  • This course will also develop an understanding of the various concepts of statistics and the methods to apply them in thermodynamics.
  • Students will understand the importance of studying statistical mechanics with the behavior of particles under classical and quantum conditions.

**************************************************************************************************************************************************************************************

 

 B Sc. IInd year

Paper: Optics

Course learning Outcome:-

  • The students would be able to develop an understanding of various aspects of harmonic oscillations and waves specially superposition of collinear and perpendicular harmonic oscillations
  • Explain several phenomena of daily life that can be explained as a wave phenomenon
  • Understand various optical phenomenon, principles, working and applications
  • Use the principle of wave motion and superposition to explain the physics of interference, diffraction and polarization.
  •  

**********************************************************************************************************************************************************************************

 

 

B Sc. IInd year

Paper: Electricity, magnetism and electromagnetic theory

Course learning Outcome:-

  • The students would be able to understand the basic concepts of electricity and magnetism and their applications
  • Apply various network theorems and their applications in electronics, electrical circuit analysis and electrical machines
  • Understand the constrction and working of ballistic galvanometer and cathode ray oscilloscope
  • Understand the concept of electromagnetic waves and their reflection and refraction from plane surface

 *********************************************************************************************************************************************************************

 

 

 B Sc. IIIrd year

Paper: Quantum mechanics and spectroscopy

Course learning Outcome:-

  1. The students would be able to understand the basic requirement of quantum mechanics with experimental explanation
  2. Solve time independent Schrodinger equation for simple quantum mechanical problems.
  3. Understand the atomic states, quantum numbers and basics of atomic spectra
  4. Understand the various spectra of diatomic molecules ,basic concepts of Raman spectroscopy, EPR and NMR spectroscopies
  5. Basics of nuclear properties, nuclear models, nuclear decays and nuclear fission & fusion.

*******************************************************************************************************************************************************************************

 

B Sc. IIIrd year

Paper: Solid State Physics and electronics devices

Course learning Outcome:-

  1. The students would be able to understand the crystal structures, their determination methods and bondings in solids.
  2. Understand the thermal specific heat of solids, magnetic and superconducting properties of materials.
  3. Understand the basic properties of semiconductors, working principles of some semiconducting devices and their applications.
  4. Understand the working & applications of Bipolar Junction Transistor(BJT) and basics of digital electronics.
  5. Understand the properties, synthesis methods and applications of nanomaterials.