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AQA GCSE Physics for Combined Science: Trilogy 9-1 Student Book Grade 8/9 class notes

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Complete GCSE Physics Revision Notes (P1–P10) Stop wasting hours flipping through heavy textbooks. This complete, concise revision bundle breaks down the entire AQA GCSE Physics specification into easy-to-read summaries, clear comparison tables, and essential exam formulas. What You Get: P1–P3 Energy & Resources: Energy stores, transfers, specific heat capacity, insulation, and power. P4–P5 Electricity & Mains: Current, potential difference, series vs. parallel circuits, I-V graphs, and mains safety. P6 Matter & Molecules: Density, internal energy, specific latent heat, and gas pressure. P7 Radioactivity: Nuclear models, alpha/beta/gamma radiation properties, decay equations, and half-life. P8–P10 Forces & Motion: Vectors, speed/velocity graphs, Newton's Laws, momentum, and Hooke's Law. Why Use These Notes? 100% Exam-Focused: Includes every key equation, unit, and definition you need to memorize. Comparison Tables: Instantly compare circuits, radiation types, and states of matter. Scannable Format: Built with clear bullet points for fast, efficient revision sessions. Ideal for high-yield revision, quick topic recaps, and last-minute exam preparation!

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conservation and dissipation of energy

,conservation and dissipation of energy

P1: Conservation and Dissipation of Energy
1.1 Changes in Energy Stores — Study Notes

Learning Objectives
You should be able to:

● Describe the different ways energy can be stored
● Explain how energy is transferred
● Describe energy changes when an object falls
● Explain energy transfers when a falling object hits the ground (without bouncing)




Energy Stores
Energy can be stored in different ways:

● Chemical energy store
○ Found in fuels, food, and batteries
○ Energy is transferred during chemical reactions
● Kinetic energy store
○ Energy an object has because it is moving
● Gravitational potential energy (GPE) store
○ Energy stored due to an object’s position above the ground
● Elastic potential energy store
○ Energy stored when an object is stretched or squashed (e.g. a spring)
● Thermal energy store
○ Energy a substance has because of its temperature




Energy Transfers
Energy can be transferred:

● By heating
● By waves (e.g. sound or light waves)
● By an electric current
● By a force moving an object

,Falling Objects
● When an object is thrown upwards:
○ Kinetic energy decreases
○ Gravitational potential energy increases
● When an object falls freely:
○ Gravitational potential energy decreases
○ Kinetic energy increases
● When a falling object hits the ground and does not bounce:
○ Kinetic energy decreases to zero
○ Energy is transferred to:
■ The thermal energy store of the object and surroundings (main
transfer)
■ Sound waves (small amount of energy)




Examples of Energy Transfers
Torch
● Chemical energy store (battery)

→ energy transferred by electric current

→ light emitted and thermal energy of bulb and surroundings increases


Electric Heater / Kettle
● Electrical energy transferred by current

→ thermal energy store of the heater/water increases


Electric Train
● Energy transferred by electric current from power station

Moving up a hill at constant speed:

● Kinetic energy store stays the same
● Gravitational potential energy store increases

Braking to a halt:

● Kinetic energy store decreases
● Energy transferred to thermal energy stores of brakes and surroundings

Microwave Oven

, ● Electrical energy transferred by current

→ energy transferred by waves (microwaves)

→ thermal energy store of the food increases




Key Points (Exam Summary)
● Energy is stored in different energy stores
● Energy is transferred, not created or destroyed
● Falling objects:
○ GPE ↓, KE ↑
● On impact (no bounce):
○ KE ↓
○ Thermal energy of surroundings ↑
○ Some energy transferred by sound waves




P1.2 Conservation of Energy — Study Notes
Learning Objectives
You should be able to:

● Define conservation of energy
● Explain why conservation of energy is important
● Describe what a closed system is
● Describe changes to energy stores in a closed system




Conservation of Energy
Principle of conservation of energy:

Energy cannot be created or destroyed.

It can only be transferred between energy stores.

This applies to all energy changes.




Systems and Closed Systems
● A system is an object or a group of objects.

Información del documento

Estudio
Año escolar
2
Subido en
17 de agosto de 2026
Número de páginas
178
Escrito en
2026/2027
Tipo
Notas de lectura
Profesor(es)
Anna lambert
Contiene
Todas las clases
$10.38

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