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Key points Formulae Physics IGCSE Revision(Part 1) Simple Easy By: Momina
Volume and Density Mass Density = Volume m = Þ(rho) V
Volume and Density How to find the volume of an irregular solid? You need to fill up a measuring cylinder with water and measure till where it is filled. Then lower the irregular solid into the measuring cylinder and measure how much the water has risen. Subtracting the two values that you have will give you the volume of the substance.
Speed  Distance Speed  = Time
Velocity  Change in velocity Average Acceleration  = Time Taken v-u = a v= final velocity u=initial velocity Negative acceleration is called deceleration or retardation t
Forces A force is a push or a pull. Force is measure in Newton's (N). If no external forces are applied to an object: ,[object Object]
It will keep moving at a constant speed.What is Terminal Velocity? It is when something is at its maximum speed.
Forces x x Mass F  a m = Acceleration Force  =
Friction Friction is a force that stops two materials from sliding across each other. Static Friction resists the lateral (sideways) movement of two objects. Dynamic Friction is the friction between two objects that are moving. It heats up the material. When something is moved against the force of friction the kinetic energy is changed into thermal energy. STATIC FRICTION IS GREATER THAN DYNAMIC FRICTION
Gravitational Force All the masses attract each other. The greater the mass, the greater the force. The closer the mass, the greater the force. To every action there is an equal but opposite reaction.
Gravitational Force x x Mass W  g m = Gravity Weight  =
The Parallelogram Rule 1. First you need to draw the two lines given to you. The directions should be accurate and the length of each line should be in proportion to the magnitude of each vector. 2. Then draw in two more lines to complete the parallelogram. 3. Diagonal from ‘O’ and then measure its length.
Centripetal Force It is an inward force needed to make an object move in a circle. More centripetal force is needed if: ,[object Object]
Speed of the object is increased
Radius of the circle is increased.,[object Object]
Hooke’s Law 	A material obeys Hooke’s law if, beneath the elastic limit, the extension is proportional to the load. x x F  k = Extension Spring Constant Load  =
Pressure   Force Pressure  = Area
Pressure in Liquids Its in all directions It increases with depth It depends on the density of the liquid It doesn’t depend on the shape of the container. x x Gravity = Density = Pressure pressure  x Height g x h Þ(rho)
Hydraulic Jack* Output Piston area   Output Force = Input Force Input Piston area
Pressure in Air Pressure decreases as you rise through it. It acts in all directions. Barometer: Measures atmospheric pressure Manometer: Measures the pressure difference
Gas Pressure When taking gas pressure the following things should be considered: Pressure Volume Temperature  Boyle’s Law: 	For a fixed mass of gas at constant temperature, the pressure is inversely proportional to the volume. x = x V1 P1 V2 P2
Energy x x Force W  d F = Distance moved in the direction of the force Work Done  =
Different Forms of Energy Kinetic energy Potential energy Gravitational energy Elastic energy Chemical energy Electrical energy Nuclear energy Thermal energy Radiated energy
Energy The law of conservation of energy 	Energy cannot be made or destroyed, but it can change from one form to another. m x = = Kinetic Energy Gravitational potential energy v g  m x ½  2 h V = Speed Gain in kinetic energy is a loss in potential energy
Scalar and Vector Quantities  Scalar: has magnitude        	   but no direction -Speed (magnitude of velocity) ,[object Object]
MassVector: has magnitude     	    and direction. -Energy ,[object Object]
Velocity
Acceleration,[object Object]
x   Work done Power  = Speed Useful Power Output  Force = Time Taken
Thermal Power Stations Boiler Steam Fuel burner Nuclear reactor Thermal  Energy Turbines Generator Electricity Carbon Dioxide + Thermal Energy + + Fuel Oxygen Water
Thermal Power Stations Problems Increased rate of global warming Sulphur dioxide causes acid rain Transporting fuels could lead to pollution due to leaks Radioactive wastes are very dangerous Nuclear accidents
Power Schemes 1- Pumped storage scheme – wind farms 2- Tidal power scheme 3- Hydroelectric power scheme
Energy Sources Renewable Hydroelectric and tidal energy ,[object Object]
Few areas are suitable
May cause environmental damageWind energy ,[object Object]
Noisy, ruin landscapeWave energy ,[object Object],Geothermal energy ,[object Object],Solar energy ,[object Object]
Solar cells difficult to transportNon-renewable Coal, oil, natural gas ,[object Object]
Carbon dioxide concentration is increasingNuclear fuels ,[object Object],[object Object]

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Igcse physics revision

  • 1. Key points Formulae Physics IGCSE Revision(Part 1) Simple Easy By: Momina
  • 2. Volume and Density Mass Density = Volume m = Þ(rho) V
  • 3. Volume and Density How to find the volume of an irregular solid? You need to fill up a measuring cylinder with water and measure till where it is filled. Then lower the irregular solid into the measuring cylinder and measure how much the water has risen. Subtracting the two values that you have will give you the volume of the substance.
  • 4. Speed Distance Speed = Time
  • 5. Velocity Change in velocity Average Acceleration = Time Taken v-u = a v= final velocity u=initial velocity Negative acceleration is called deceleration or retardation t
  • 6.
  • 7. It will keep moving at a constant speed.What is Terminal Velocity? It is when something is at its maximum speed.
  • 8. Forces x x Mass F a m = Acceleration Force =
  • 9. Friction Friction is a force that stops two materials from sliding across each other. Static Friction resists the lateral (sideways) movement of two objects. Dynamic Friction is the friction between two objects that are moving. It heats up the material. When something is moved against the force of friction the kinetic energy is changed into thermal energy. STATIC FRICTION IS GREATER THAN DYNAMIC FRICTION
  • 10. Gravitational Force All the masses attract each other. The greater the mass, the greater the force. The closer the mass, the greater the force. To every action there is an equal but opposite reaction.
  • 11. Gravitational Force x x Mass W g m = Gravity Weight =
  • 12. The Parallelogram Rule 1. First you need to draw the two lines given to you. The directions should be accurate and the length of each line should be in proportion to the magnitude of each vector. 2. Then draw in two more lines to complete the parallelogram. 3. Diagonal from ‘O’ and then measure its length.
  • 13.
  • 14. Speed of the object is increased
  • 15.
  • 16. Hooke’s Law A material obeys Hooke’s law if, beneath the elastic limit, the extension is proportional to the load. x x F k = Extension Spring Constant Load =
  • 17. Pressure Force Pressure = Area
  • 18. Pressure in Liquids Its in all directions It increases with depth It depends on the density of the liquid It doesn’t depend on the shape of the container. x x Gravity = Density = Pressure pressure x Height g x h Þ(rho)
  • 19. Hydraulic Jack* Output Piston area Output Force = Input Force Input Piston area
  • 20. Pressure in Air Pressure decreases as you rise through it. It acts in all directions. Barometer: Measures atmospheric pressure Manometer: Measures the pressure difference
  • 21. Gas Pressure When taking gas pressure the following things should be considered: Pressure Volume Temperature Boyle’s Law: For a fixed mass of gas at constant temperature, the pressure is inversely proportional to the volume. x = x V1 P1 V2 P2
  • 22. Energy x x Force W d F = Distance moved in the direction of the force Work Done =
  • 23. Different Forms of Energy Kinetic energy Potential energy Gravitational energy Elastic energy Chemical energy Electrical energy Nuclear energy Thermal energy Radiated energy
  • 24. Energy The law of conservation of energy Energy cannot be made or destroyed, but it can change from one form to another. m x = = Kinetic Energy Gravitational potential energy v g m x ½ 2 h V = Speed Gain in kinetic energy is a loss in potential energy
  • 25.
  • 26.
  • 28.
  • 29. x Work done Power = Speed Useful Power Output Force = Time Taken
  • 30. Thermal Power Stations Boiler Steam Fuel burner Nuclear reactor Thermal Energy Turbines Generator Electricity Carbon Dioxide + Thermal Energy + + Fuel Oxygen Water
  • 31. Thermal Power Stations Problems Increased rate of global warming Sulphur dioxide causes acid rain Transporting fuels could lead to pollution due to leaks Radioactive wastes are very dangerous Nuclear accidents
  • 32. Power Schemes 1- Pumped storage scheme – wind farms 2- Tidal power scheme 3- Hydroelectric power scheme
  • 33.
  • 34. Few areas are suitable
  • 35.
  • 36.
  • 37.
  • 38.
  • 39. Absolute Zero -273˚Ć= 0 Kelvin (0 K) Kelvin Temperature/K = Celsius Temperature/˚Ć+273 This is the lowest temperature there is. It is a thermodynamic scale. It is based on the average kinetic energy of particles.
  • 40.
  • 41. Pressure ÷ Kelvin temperature  always has the same valueThermal Conduction: Conduction is the process by which thermal energy is transferred from the hot end to the cold end as the faster particles pass on their extra motion to particles along the bar.
  • 42.
  • 43. Cross-sectional area of the bar is increased
  • 44.
  • 45.
  • 48.
  • 49. Latent Heat of Fusion x mL = Mass = Specific Latent Heat Energy Transferred Energy Transferred
  • 50. Keep in mind This was half of the Physics Syllabus 2011. The information in this PowerPoint should only be used if you have actually understood most of the theory. The rest of the syllabus should be up and running as soon as possible BEST OF LUCK

Notas do Editor

  1. *This is not necessary to know.