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Page 1 An ISO 9001-2008 Certified Organization MADHYA PRADESH CURRICULUM Standard XII PHYSICS: Content List Designmate (I) PVT LTD Horizon, Swati Society Road, Darpan Circle, Ahmedabad 380014 www.designmate.com Follow us on Reduce your carbon footprint, think before printing this document.

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Page 1: MADHYA PRADESH CURRICULUM Standard XII … Pradesh/English - 7.3 - Std 01-12... · Laws of Combination of Resistors using Metre Bridge 00.00.00 . Page 7 Physics Topic Name Duration

Page 1

An ISO 9001-2008 Certified Organization

MADHYA PRADESH CURRICULUM

Standard XII PHYSICS: Content List

Designmate (I) PVT LTD

Horizon, Swati Society Road,

Darpan Circle, Ahmedabad – 380014

www.des ignm ate .com

Follow us on

Reduce your carbon footprint, think before printing this document.

Page 2: MADHYA PRADESH CURRICULUM Standard XII … Pradesh/English - 7.3 - Std 01-12... · Laws of Combination of Resistors using Metre Bridge 00.00.00 . Page 7 Physics Topic Name Duration

Page 2

SUBJECT TOTAL TOPIC TOTAL DURATION

Physics 318 19.48.04

TOTAL 318 19.48.04

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Physics

Topic Name Duration

Unit 01: Electrostatics

1. Electric Charge 00.05.15

2. Nature of Charges 00.02.16

3. Why Do Substances Get Charged? 00.01.54

4. Electroscope 00.01.05

5. Pith Ball Electroscope 00.03.41

6. Gold-Leaf Electroscope 00.08.35

7. Frictional Electricity 00.02.16

8. Electromagnetism 00.02.15

9. Quantization of Electric Charge 00.02.25

10. Properties of Electric Charge 00.05.29

11. Electrostatic Force and Coulomb's Law 00.05.35

12. Electrostatic potential 00.04.45

13. Electrostatic Shielding 00.04.44

14. Coulomb's law 00.00.00

15. Coulomb forces between many charges 00.04.33

16. Gravitational force 00.00.52

17. Dielectrics: Polar and Non-polar 00.05.28

18. Dielectric Substance & Their Polarization 00.02.26

19. Dielectric Substance in the Uniform Electric Field 00.02.24

20. Dielectrics in a Capacitor 00.05.51

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Physics

Topic Name Duration

21. Electric Potentials Due to Continuous Distribution of Charge

00.02.00

22. Electric Field 00.04.02

23. Electric Field and Potential Due to a Point Charge 00.00.00

24. Electric Field Lines 00.02.56

25. Characteristics of Electric Field Lines 00.04.21

26. Electric Dipole and its Physical Significance 00.07.19

27. Behaviour of dipole in the uniform electric field 00.03.23

28. Behaviour of An Electric Dipole in the Non-Uniform Electric Field

00.03.08

29. Electric Field due to a Dipole along its Axis 00.00.00

30. Electric Field due to a Dipole on its Equatorial Plane 00.00.00

31. Potential Energy of An Electric Dipole in a Uniform Electric Field

00.03.00

32. Potential Energy of a System of Charges 00.02.30

33. The flux 00.02.49

34. Gauss's Theorem (Part-1) 00.04.10

35. Gauss's Theorem (Part-2) 00.03.59

36. Application of Gauss's Theorem (Part-1) 00.03.53

37. Applications of Gauss's Theorem (Part-2) 00.06.48

38. Electric Field due to Infinite Plane Sheet of Charge 00.06.04

39. Mathematical expression of Electric Potential 00.06.33

40. Electric Potential (Part-1) 00.04.20

41. Electric Potential (Part-2) 00.02.39

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Physics

Topic Name Duration

42. Electric Potential Difference 00.06.24

43. Electric Potential Energy and Potential Difference 00.06.32

44. Electric Potential Due to a Point Charge 00.02.17

45. Electric potential in the field of an electric dipole 00.04.17

46. Equipotential Surfaces 00.03.10

47. Semiconductors (Introduction) 00.02.42

48. Conductors in the Electric Field 00.02.39

49. Comparing Conductors and Electrolytes 00.04.21

50. Identifying Conducting and Non-Conducting Materials Using Gold-leaf Electroscopes

00.04.13

51. Capacitor 00.08.35

52. Capacitance of a Parallel Plate Capacitor 00.00.00

53. Capacitors & their capacitance 00.02.19

54. Parallel plate capacitor 00.04.50

55. Spherical capacitor 00.02.25

56. Cylindrical capacitor 00.03.15

57. Series combination of capacitors 00.03.26

58. Capacitors in parallel 00.00.00

59. Energy Stored in a Capacitor in terms of Energy Density of Electric Field

00.01.46

60. Energy of the Charged Capacitor 00.02.58

61. Van de Graaff Generator 00.04.26

62. Potential Difference across Van De Graaff Generator 00.03.53

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Page 6

Physics

Topic Name Duration

Unit 02: Current Electricity

1. Electric Charge 00.05.15

2. Electric Circuit 00.02.34

3. Drift velocity 00.07.21

4. Drift velocity and Origin of Resistivity 00.07.23

5. Mobility 00.02.10

6. Ohm's Law 00.07.26

7. Ohm's Law and Resistivity 00.01.57

8. Electric Resistance and Heating Effect 00.05.09

9. Temperature Dependence of Resistivity 00.02.48

10. Thermistors 00.02.26

11. Resistivity and the temperature 00.06.50

12. Heating Effect of Electric Current 00.03.08

13. Resistors in Series 00.01.37

14. Law of Combination of Resistors in Series 00.00.00

15. Series Connection of Resistors 00.01.32

16. Parallel Connection of Resistors 00.04.38

17. Kirchhoff's First Law 00.02.48

18. Kirchhoff's Second Law 00.03.00

19. Wheatstone Bridge 00.04.01

20. Wheatstone Bridge 00.00.00

21. Metre Bridge 00.00.00

22. Laws of Combination of Resistors using Metre Bridge 00.00.00

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Page 7

Physics

Topic Name Duration

23. Superconductivity 00.02.04

24. Types of Resistors 00.06.46

25. Galvanic Cell And Salt Bridge 00.03.20

26. The Dry Cell 00.00.00

27. Lead Acid Storage Battery 00.04.47

28. EMF of a Galvanic Cell 00.03.02

29. Leclanche Cell 00.02.51

30. Daniel Cell 00.02.05

31. Electromotive Force (emf) 00.06.39

32. Electromotive Force and Terminal Voltage 00.06.49

33. Electric Potential Difference 00.06.24

34. Potential Difference across Van De Graaff Generator 00.03.53

35. Comparison of emf of two cells using potentiometer 00.00.00

36. Internal resistance of a cell using potentiometer 00.00.00

37. Cells in Series 00.01.18

38. Combinations of Cells 00.06.49

39. Potentiometer 00.05.30

40. Variable Resistors (Potentiometer & Rheostat) 00.06.30

41. Use of a potentiometer 00.05.30

Unit 03: Effects of Electric Current

1. Electric Bell 00.03.30

2. Magnetic Effect of Electric Current 00.07.42

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Physics

Topic Name Duration

3. Magnetic Field due to a Current in a Long Straight Wire (Using Ampere's Law)

00.02.15

4. Magnetic Field due to a Straight Wire Carrying Current (Part-1)

00.06.02

5. Biot - Savart's Law 00.04.15

6. Magnetic Field due to a Straight Wire Carrying Current (Part-2)

00.03.09

7. Magnetic Field due to a Current Carrying Circular Coil (Part-1)

00.02.56

8. Magnetic Field due to a Current Carrying Circular Coil (Part-2)

00.04.02

9. Magnetic Field of a Solenoid 00.02.33

10. Magnetic Field due to a Current Carrying Solenoid (Part-1)

00.03.47

11. Magnetic Field due to a Current Carrying Solenoid (Part-2)

00.02.58

12. Force on a Current-Carrying Conductor in a Magnetic Field

00.05.12

13. Explanation of Motor Force 00.03.06

14. Magnetic Field 00.00.42

15. Cyclotron 00.03.30

16. Force between two Parallel Wires Carrying Current 00.03.46

17. Torque on a Current Carrying Loop in a Uniform Magnetic Field

00.06.41

18. Moving Coil Loudspeaker 00.02.50

19. Galvanometer 00.09.05

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Page 9

Physics

Topic Name Duration

20. Conversion of a Galvanometer into Ammeter 00.00.00

21. Conversion of a Galvanometer into Voltmeter 00.00.00

22. Coulomb's law 00.00.00

23. Electrostatic Force and Coulomb's Law 00.05.35

24. Magnetic Dipole Moment 00.07.05

25. Gauss's Theorem (Part-1) 00.04.10

26. Application of Gauss's Theorem (Part-1) 00.03.53

27. Gauss's Theorem (Part-2) 00.03.59

28. Applications of Gauss's Theorem (Part-2) 00.06.48

29. Solenoid and Bar Magnet 00.03.39

30. Diamagnetism 00.01.46

31. Para-Magnetism 00.02.59

32. Ferromagnetism 00.03.38

33. Permanent Magnets and Electromagnets 00.01.40

34. Earth's magnetism 00.02.52

35. Magnetic Declination 00.01.20

36. Magnetic Dip Angle 00.01.21

37. Horizontal Component and Vertical Component of Earth's Magnetic Field

00.01.13

Unit 04: Electro -Magnetic Induction

1. Electromagnetic Induction 00.03.40

2. Magnetic Flux 00.05.56

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Physics

Topic Name Duration

3. Electromagnetic Induction and Faraday's Experiments 00.03.40

4. Faraday's Experiments 00.02.26

5. Faraday's Laws 00.03.52

6. Lenz's Law 00.04.13

7. Fleming's Right Hand Rule 00.02.15

8. Eddy Currents 00.09.28

9. Eddy Current (Introduction) 00.02.17

10. Effects Of Eddy Currents (Electromagnetic Damping) 00.09.07

11. Effects of Eddy Currents (Levitation) 00.03.56

12. Direct and Alternating Current 00.07.14

13. Alternating Voltages and Alternating Currents 00.07.15

14. RMS values for the voltage and the current 00.04.31

15. A.C. circuit with resistance, inductor & capacitor in series

00.05.33

16. LC Oscillations 00.06.50

17. Transformers 00.09.18

18. Energy Losses in a Transformer 00.06.20

19. AC Generator 00.06.05

20. DC Motor 00.03.52

21. Fundamentals of a DC Motor 00.07.31

Unit 05: Electromagnetic Wave & Wave Optics

1. Production of electromagnetic waves 00.09.25

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Page 11

Physics

Topic Name Duration

2. Accelerated Charge and Electromagnetic Waves 00.06.42

3. Characteristics of Electromagnetic Waves 00.07.28

4. Characteristics of Sound Wave 00.08.11

5. Electromagnetic Spectrum (Part - 1) 00.05.19

6. Electromagnetic Spectrum (Part - 2) 00.03.51

7. X - ray Spectrum 00.06.43

8. Propagation of Radio Waves : Sky waves 00.10.41

9. Amplitude Modulation 00.01.28

10. Frequency Modulation 00.00.00

11. Communication System 00.03.59

12. Geostationary satellites 00.02.51

13. Satellite Communication 00.03.19

14. Remote Sensing 00.02.19

15. Newton's Corpuscular Theory 00.01.01

16. Wavefronts and Huygens’ Principle 00.06.59

17. Principle of Superposition 00.01.29

18. Superposition of Waves 00.00.00

19. Interference 00.03.15

20. Ripple Tank Experiment to Illustrate Interference 00.06.59

21. Young's Double-Slit Experiment (Introduction) 00.05.01

22. Young's Double-Slit Experiment (Intensity of Fringes) 00.07.08

23. Young’s Double-Slit Experiment: Fringe Width 00.05.49

24. Diffraction of Light 00.06.51

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Page 12

Physics

Topic Name Duration

25. Fresnel Diffraction at a Straight Edge 00.02.21

26. Polarization of Light and Malus's Law 00.00.00

27. Linear Polarization of Light 00.00.00

28. Polarization by Reflection and Brewster's Law 00.04.08

29. Nicol Prism 00.01.40

30. Uses of Polarization 00.01.47

Unit 06: Ray Optics

1. Ray Diagrams 00.04.06

2. Reflection of Light and its Laws 00.04.08

3. Laws of Reflection 00.03.33

4. Laws of reflection of light 00.00.00

5. Reflection and refraction of wave 00.05.43

6. Mirror and Reflection 00.02.43

7. Reflection by Spherical Mirrors 00.04.03

8. Image Formation in a Plane Mirror 00.03.55

9. Formation of Images by a Smooth Plane Mirror 00.01.26

10. Effects of Rotation of a Plane Mirror 00.03.40

11. Two Plane Mirrors Parallel to Each Other 00.01.52

12. Real and Virtual Images 00.07.20

13. New Cartesian Sign Convention (Spherical Mirrors and Lenses)

00.06.10

14. Images Formed by a Convex Mirror 00.04.42

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Page 13

Physics

Topic Name Duration

15. Focal Length of a Convex Mirror using a Convex Lens 00.00.00

16. Images Formed by a Concave Mirror 00.05.38

17. Focal Length of a Concave Mirror 00.00.00

18. Focal length of a Concave Mirror Removing Parallax 00.00.00

19. Refractive Index of Water Using a Concave Mirror 00.00.00

20. Magnification of a Lens 00.00.00

21. The Mirror Equation 00.07.32

22. Refraction of Light 00.01.50

23. Refraction through Glass Slab 00.02.39

24. Refractive Index 00.02.28

25. Refractive Index of a Glass Slab 00.00.00

26. Refractive Index of Water Using a Convex Lens and a Plane Mirror

00.00.00

27. Huygen's principle and refraction 00.08.08

28. Total Internal Reflection (Part-1) 00.06.09

29. Total Internal Reflection (Part-2) 00.04.01

30. Total Internal Reflection in a Prism 00.02.43

31. Applications of Total Internal Reflection 00.02.53

32. Mirage and Looming 00.02.24

33. Uses of Total Internal Reflection 00.01.24

34. Use of Total Internal Reflection (Optical Fibres) 00.01.39

35. Curved Mirrors 00.03.24

36. Focal Point of a Thin Lens 00.02.37

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Page 14

Physics

Topic Name Duration

37. Power of a Lens 00.02.31

38. Combination of thin lenses in contact 00.05.55

39. Focal Length of a Convex Lens by Removing Parallax 00.00.00

40. Focal length of Convex Lens 00.00.00

41. Refraction through a Prism 00.01.35

42. Dispersion of Light due to Prism 00.05.19

43. Dispersion of White Light 00.02.47

44. Scattering of Light 00.05.12

Unit 07: Optical Instruments

1. Magnification of a Lens 00.00.00

2. Simple Microscope 00.04.39

3. Compound Microscope 00.04.40

4. Magnifying Power of a Compound Microscope 00.03.07

5. Electron Microscope 00.03.29

6. Telescope 00.06.14

7. Astronomical Telescope (Part-1) 00.03.54

8. Astronomical Telescope - 2 00.02.28

9. Terrestrial Telescope 00.01.56

10. Resolving Power of a Telescope 00.02.33

11. Reflecting Telescope 00.04.28

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Page 15

Physics

Topic Name Duration

Unit 08: Electron and Photon

1. Discharge of Electricity through Gases 00.02.34

2. Cathode Ray Tube (CRT) 00.03.26

3. X - ray Spectrum 00.06.43

4. Properties of X-Rays 00.01.14

5. Radioactive Elements 00.03.42

6. Radioactive Isotopes 00.07.40

7. Artificially Produced Radioisotopes and Their Uses 00.06.23

8. Nuclear Force 00.02.04

9. Radioactivity 00.07.44

10. Natural Radioactivity 00.02.45

11. Emission of Electrons 00.01.48

12. Thermionic Emission 00.08.19

13. Photoelectric Effect: The concept 00.07.31

14. Experiments of Photoelectric Effect 00.08.26

15. Millikan's Oil-Drop Experiment (Charge of an Electron) 00.06.46

16. Photocell 00.01.16

17. De Broglie Equation 00.02.29

18. de Broglies Explanation of Bohr's Postulate of Quantisation

00.07.09

Unit 09: Solid state and Semi-Conductor Devices

1. Crystalline and Amorphous Solids 00.05.49

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Page 16

Physics

Topic Name Duration

2. Semiconductors 00.07.05

3. Semiconductors (Introduction) 00.02.42

4. Conductors and Insulators 00.03.45

5. Conductors 00.02.16

6. Electric Conductors and Insulators 00.03.20

7. Intrinsic Semiconductors 00.03.42

8. Extrinsic Semiconductor (Part-1) 00.04.02

9. Extrinsic Semiconductor (Part-2) 00.02.51

10. P-type semiconductor 00.00.55

11. N-type semiconductor 00.03.03

12. p-n Junction Diode (Part-1) 00.03.43

13. p-n Junction Diode (Part-2) 00.04.26

14. Characteristics of a P-N Junction 00.02.48

15. Working of a p-n Junction Diode (Forward Bias) 00.10.32

16. Working of a p-n Junction Diode (Reverse Bias) 00.08.58

17. Optoelectronic Junction Devices 00.06.10

18. Half Wave Rectifier 00.03.58

19. Full wave rectifier 00.00.54

20. I- V Characteristics of a p-n Junction Diode 00.00.00

21. Zener Diode (Working) 00.03.12

22. I-V characteristics of a Zener Diode 00.00.00

23. Transistors 00.04.37

24. Basics of a Transistor 00.04.30

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Page 17

Physics

Topic Name Duration

25. Characteristics of a Common Emitter Transistor 00.00.00

26. Transistor Amplifier 00.10.10

27. Transistor oscillator 00.01.56

28. Transistor as a Switch 00.12.30

29. Logic Gates 00.06.52

30. Digital Electronics and Logic Gates 00.03.32

31. NOT Gate 00.03.10

32. OR Gate 00.04.50

33. AND Gate 00.03.57

34. NAND Gate 00.00.57

35. NAND as a Universal Gate 00.00.00

36. NOR Gate 00.01.11

37. Primary Concept of IC (Integrated Circuit) 00.03.04

Unit 10: Principles of Communication

1. Communication System 00.03.59

2. Types of Communication Systems 00.03.36

3. Line Communication 00.01.12

4. Optical Fibre Communication Technology 00.01.49

5. Satellite Communication 00.03.19

6. Need for Modulation 00.03.58

7. Amplitude Modulation 00.01.28

8. Frequency Modulation 00.00.00

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Page 18

Physics

Topic Name Duration

9. Classification Based on Types of Modulation 00.02.20

10. Optical Fibre 00.02.01

11. Structure of Optical Fibres 00.03.00

12. Use of Total Internal Reflection (Optical Fibres) 00.01.39

13. Light Emitting Diode 00.04.19

14. Lasers and their Uses 00.06.35

15. Applications of Laser (Part-1) (CD Player) 00.02.43

16. Applications of Laser (Part-2) (Barcode Reader) 00.02.19

17. Photodiode 00.02.11

TOTAL TOPIC IN PHYSICS – 318 19.48.04

TOTAL TOPIC IN STD XII PHYSICS – 318 19.48.04