GCSE Physics (Triple) AQA
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93 topics in 9 modules
☑️ Energy 12 topics
- Energy: Energy Stores & Systems
- Energy: Kinetic and Potential Energy Stores
- Energy: Specific Heat Capacity
- Energy: Conservation of Energy and Power
- Energy: Conduction and Convection
- Energy: Reducing Unwanted Energy Transfers
- Energy: Efficiency
- Energy: Energy Resources and their Uses
- Energy: Wind, Solar and Geothermal
- Energy: Hydro-electricity, Waves and Tides
- Energy: Biofuels and Non-Renewable Energies
- Energy: Trends in Energy Resource Use
☑️ Electricity 10 topics
- Electricity: Current and Circuit Symbols
- Electricity: Resistance
- Electricity: I-V Characteristics
- Electricity: Circuit Devices
- Electricity: Series and Parallel Circuits
- Electricity: Electricity in the Home
- Electricity: Power of Electrical Appliances
- Electricity: The National Grid
- Electricity: Static Electricity
- Electricity: Electric Fields
☑️ Particle Model of Matter 5 topics
- Matter: Density of Materials
- Matter: Internal Energy
- Matter: Changes of State
- Matter: Specific Latent Heat
- Matter: Particle Motion in Gases
☑️ Atomic Structure 8 topics
- Atomic Structure: Developing the Model of the Atom
- Atomic Structure: Isotopes
- Atomic Structure: Nuclear Radiation and Equations
- Atomic Structure: Half-life
- Atomic Structure: Background Radiation and Contamination
- Atomic Structure: Uses and Risks of Radiation
- Atomic Structure: Nuclear Fission
- Atomic Structure: Nuclear Fusion
☑️ Forces 20 topics
- Forces: Contact and Non-Contact Forces
- Forces: Weight, Mass and Gravity
- Forces: Resultant Forces and Work Done
- Forces: Calculating Forces
- Forces: Forces and Elasticity
- Forces: Springs
- Forces: Moments
- Forces: Fluid Pressure
- Forces: Upthrust and Atmospheric Pressure
- Forces: Distance, Displacements, Speed and Velocity
- Forces: Acceleration
- Forces: Distance-Time Graphs
- Forces: Velocity-Time Graphs
- Forces: Terminal Velocity
- Forces: Newton's First Law
- Forces: Newton's Second Law
- Forces: Inertia & Newton's Third Law
- Forces: Stopping Distances
- Forces: Reaction Time
- Forces: Momentum
☑️ Waves 14 topics
- Waves: Transverse and Longitudinal Waves
- Waves: Reflection
- Waves: Electromagnetic Waves and Refraction
- Waves: Light
- Waves: Radio Waves
- Waves: Lenses
- Waves: Images and Ray Diagrams
- Waves: Concave Lenses and Magnification
- Waves: Visible Light
- Waves: Infrared Radiation and Temperature
- Waves: Black Body Radiation
- Waves: Sound Waves
- Waves: Ultrasound
- Waves: Exploring Structures Using Waves
☑️ Magnetism and Electromagnetism 7 topics
- Magnetism: Permanent and Induced Magnets
- Magnetism: Electromagnetism
- Magnetism: The Motor Effect
- Magnetism: Electric Motors and Loudspeakers
- Magnetism: The Generator Effect
- Magnetism: Generators and Microphones
- Magnetism: Transformers
☑️ Space Physics 4 topics
- Space Physics: The Life Cycle of Stars
- Space Physics: The Solar System and Orbits
- Space Physics: Red-shift
- Space Physics: Big Bang
☑️ Scalar and Vector Quantities 13 topics
- Distinction between Scalars and Vectors
- Examples of Scalar Quantities
- Examples of Vector Quantities
- Representing Vectors with Arrows
- Vector Addition and Resultant Vectors
- Calculating Resultant Vectors
- Vector Components in Two Dimensions
- Vector Components in Right-Angle Triangles
- Combining Scalar and Vector Quantities in Calculations
- The Role of Scalars and Vectors in Everyday Situations
- Effects of Vector Magnitude and Direction
- Vector Displacement vs. Scalar Distance
- Practical Applications of Scalars and Vectors in Physics
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GCSE Physics (Triple) AQA Revision Content
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GCSE Physics (Triple) AQA - Energy - Energy: Energy Stores & Systems Content Preview
Energy
Energy: Energy Stores & Systems
Energy Stores
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Energy is the capacity to do work and it can be stored in various forms.
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Energy may be stored in kinetic, thermal, chemical, or nuclear stores when work is done on the system.
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Gravitational potential, elastic potential, electrostatic, and magnetic stores are energy stores related to an object's position in a field or its deformation.
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Energy stores do not include 'light energy', 'sound energy' or 'electrical energy'. These are usually ways in which energy is transferred (e.g. light transfers energy from the Sun to Earth, electrical transfers energy along a wire).
Energy Transfers
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Energy is transferred from one store to another by mechanical work, electrical work, by heating, or by radiation (including sound and light).energy is transferred from one store to another.
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The rate of transfer of energy depends on the difference in temperature between the heat source and the object, and properties like the object’s surface area and the type of material it is made up of.
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Energy transfers may be useful transfers (e.g., electrical energy transferring to light in a light bulb) or wasteful (e.g., thermal energy transferring to the surrounding air from a light bulb).
Energy Systems
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An energy system is a physical system or process where energy transfers occur. For example, a car engine, a heating system, or a solar cell.
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Closed systems are those where neither matter nor energy can enter or leave. The net change in the total energy of a closed system is always zero.
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Diagrams called sankey diagrams can be used to represent energy transfers in a system. The wider the arrow, the more energy it represents.
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Energy can only be changed from one form to another or transferred from one place to another; it cannot be created or destroyed, this is the principle of conservation of energy.
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The total energy of a system is always conserved unless work is done on or by the system. In a closed system, the total amount of energy is a constant if considered over large time scales.
Question: Explain what occurs to the total energy of a closed system when work is done on it?
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