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Fundamentals of Physics

BI 1498

New

F.Y.B.Sc. Biotechnology

According to New Revised Syllabus w.e.f. 2013-14 PUNE, Maharashtra (INDIA)

Fundamentals of Physics

Author: Dr. Avinash Mancharkar, Dr. Rajesh Shirkr, Neeta Mohite, Divya Kaushal

ISBN: 978-93-5016-143-2

Edition: 3rd 2016

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Contents

1. Interrelationship between Physics and Life Sciences

1. Introduction  

2. Interrelationship between Physics and Life Sciences     

2. Measurements  

1. Introduction  

2. Methods of Measurement    

3. Units for Measurement     

4. Standards     

3. Elasticity    

1. Introduction  

2. Limit of Elasticity 

3. Stress and Strain in Solids

4. Hooke's Law   

5. Stress Strain Curves

6. Poisson’s Ratio (s) 

7. Explanation of Elasticity on the Basis of Atomic Model  

8. Relevance of Elasticity in Life Sciences    

Numerical Examples     

4. Fluid Statics 

1. Introduction  

2. Density and Pressure

3. Fluids at Rest

4. Measurement of Pressure   

5. Pascal's Principle  

5. Fluid Dynamics (Viscosity)

1. Streamline and Turbulent Flow   

2. Equation of Continuity    

3. Viscosity     

4. Poiseuille's Equation     

5. Reynold’s Number    

6. Concept of Pressure Energy

7. Bernoulli’s Theorem 

8. Methods of Viscosity Estimation 

9. Relevance of Viscosity to Life Sciences     

Numerical Examples     

6. Surface Tension

1. Surface Tension     

2. Surface Tension Expressed as Surface Energy 

3. Capillary Action    

4. Angle of Contact    

5. Methods of Measurement of Surface Tension   

6. Relation between Surface Tension, Excess Pressure and Curvature     

7. Factors Affecting Surface Tension     

8. Applications of Surface Tension 

9. Wettability   

10. Influence of Temperature on Surface Tension

Numerical Examples     

7. Sound Waves

1. Wave    

2. Types of Waves

3. Principle of Superposition of Waves   

4. Source of Sound and Vibrating Systems 

5. Beats in Sound Waves

6. The Doppler Effect  

7. Audible, Ultrasonic and Infrasonic Waves    

Numerical Examples     

8. Heat    

1. Introduction  

2. A Form of Energy    

3. Quantity of Heat and Specific Heat    

4. Molar Heat Capacity of Solid    

5. Concept of Temperature    

6. Thermal Equilibrium - Zeroth Law of Thermodynamics

7. Measuring Temperature     

9. Thermodynamics and Real Gases

1. Heat and Work 

2. First Law of Thermodynamics     

3. Second Law of Thermodynamics    

4. Carnot Cycle and its Efficiency 

5. Vander Waal’s Equation of State 

6. Critical Constants  

7. Concept of Entropy  

Numerical Examples     

10. Refrigeration

1. Refrigeration 

2. Principle of Refrigeration

3. Co-Efficient of Performance     

4. Application of Refrigeration to Biotechnology     

5. Side Effects of Refrigerator    

6. Carnot Cycle  

7. Adiabatic Process   

8. Isothermal Process  

9. Refrigerant   

Numerical Examples     

11. Optics 

1. Properties / Characteristics of Light 

2. Diffraction of Light

3. Fresnel and Fraunhofer Diffraction    

4. Superposition of Waves - Interference 

5. Polarization

6. Optical Activity    

7. Lasers  

Numerical Example

12. Charge And Matter

1. Electromagnetism (Preview)

2. Electric Current    

3. Insulators and Semiconductors   

4. Coulomb’s Law 

Numerical Examples

13. Magnetism    

1. Introduction  

2. Magnetic Field

3. Magnetic Pole and Dipole  

4. Gauss’s Law in Magnetism  

5. Earth’s Magnetic Field    

6. Magnetic Material   

7. Nuclear Magnetism   

8. Biomagnetism  

Numerical Examples

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