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Physics_AS
> 8.9. Diffraction Grating > Flashcards
8.9. Diffraction Grating Flashcards
Study These Flashcards
Physics_AS
(67 decks)
1.1. Physical Quantities
1.2. SI Units
1.3. Systematic & Random errors
1.4. Scalars and Vectors
2.1 Kinematics equations
2.2. Kinematics concepts
2.3. Linear Motion
2.4. Non-Linear Motion
2.5. Motion of Freefalling Bodies
2.6. Determining Acceleration of Free Fall
2.7. Projectile motion
2.8. Motion of a Skydiver
3.1. Newton’s laws of motion
3.2. Momentum
3.3. Mass and Weight
3.4. Elastic Collisions
3.5. Inelastic Collisions
3.6. Collisions in Two Dimensions
4.1 Forces, Density, Pressure
4.2. Pressure in Fluids
5.1 Work, Energy, Power
5.2. Work Done
5.3. Gravitational, Elastic and Electric Potential Energy
5.4. Deriving Gravitational Potential Energy
5.5. Deriving Kinetic Energy
5.6. Internal Energy
5.7. Power and Efficiency
6.1. Compressive and Tensile Forces
6.2. Hooke’s Law
6.3. Determining Young’s Modulus
6.4. Stress, Strain and Young’s Modulus
BLOCKER
7.1 Waves
7.2. Deducing Wave Equation
7.3. Phase Difference
7.4. Intensity
7.5. Transverse and Longitudinal waves
7.6. The Doppler Effect
7.7. Electromagnetic Waves
8.1. Principle of Superposition
8.2. Interference and Coherence
8.3. Two-Source Interference
8.4. Formation of Stationary waves
8.5. Stationary Wave Experiments
8.6. Stationary and Progressive Waves
8.7. Diffraction
8.8. Double-Slit Interference
8.9. Diffraction Grating
9.1 Electricity
9.2. Current-Carrying Conductors
9.3. Current-P.D. Relationships
10.1 D.C. Circuits
10.2. Potential Difference and Electromotive Force
10.3. Internal Resistance
10.4. Kirchhoff’s 1st Law
10.5. Kirchhoff’s 2nd Law
10.6. Deriving Effective Resistance in Series
10.7. Deriving Effective Resistance in Parallel
10.8. Potential Divider
10.9. Potentiometers
11.1. Geiger-Marsden
11.2. The Nuclear Atom
11.3. Nuclear Processes
11.4. Radiations
11.5. Types of Decays
11.6. Fundamental Particles
11.7. Particle Families