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My resources attempt to construct the key concept of the scientific idea. The concept is then applied to a context with detailed examples. Similar questions follow and then more challenging questions follow. Detailed solutions included.

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My resources attempt to construct the key concept of the scientific idea. The concept is then applied to a context with detailed examples. Similar questions follow and then more challenging questions follow. Detailed solutions included.
Stored Energy
muson99muson99

Stored Energy

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Energy types identified. Activities are given energy values and total energy required calculations are set. All solutions are shown at the end.
Introduction to electrical circuits
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Introduction to electrical circuits

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This presentation introduces the ideas of current and voltage and the measurement of them. It has analogue meters to take readings from and then develops the ideas behind batteries and polarity.
Introduction to forces: Fundamental ideas
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Introduction to forces: Fundamental ideas

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Start from the beginning of your understanding of forces. Diagrams and explanations of the most common forces and common misconceptions identified. A ‘name that force’ assessment at the end with an answer page. It would work nicely as a home study resource, that’s what it was written for.
Change in temperature
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Change in temperature

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A nice little activity dealing with cooling and warming data. Graph plot which can be printed and completed on paper or completed electronically. Questions about the temperature change and explanations included. Designed as an online resource but would work in the classroom.
What's power?
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What's power?

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The resource compares the concept of work and power. Calculations and answers included.
Kinetic Energy
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Kinetic Energy

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The KE equation is introduced. Example calculations and a st of questions(with answers).
Mass and Weight
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Mass and Weight

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This lesson establishes the concept of mass ad its constant nature throughout the universe The constant gravity of Earth is established as well as other gravitational field strengths. The weight=massxgravity equation is introduced. There are practice calculations throughout as well as a statement test at the end. It would make a good home learning resource.
Thermal Energy Transfer:Radiation
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Thermal Energy Transfer:Radiation

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This resource links infra-red from the electromagnetic spectrum to thermal radiation and it’s key characteristics are identified. Data on absorption and reflection of different surfaces is listed and a graph plot is required. A conclusion is required about the effectiveness of each surface. This resource has been designed as a home learning resource but would also work in the classroom. It is 1 of a set of 4 pieces about thermal energy transfer.
Thermal Energy Transfer by Conduction
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Thermal Energy Transfer by Conduction

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The presentation describes the process of conduction on an everyday scale and then in terms of particles. True or False statement test at the end with answers. This resource could be expanded upon as a lesson in school. It has been designed as a home learning activity. It is 1 in a series of 4 about thermal energy transfer.
Thermal Energy Transfer:Convection
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Thermal Energy Transfer:Convection

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The presentation describes the process of convection in a liquid and a gas on a particle scale. True or False statement test at the end with answers. This resource could be expanded upon as a lesson in school. It has been designed as a home learning activity. It is 1 in a series of 4 about thermal energy transfer.
Static Charge
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Static Charge

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Introducing static charge. It covers the principles of positive and negative charge. Conductors and insulators. Like and Unlike. Attract and Repel. Discharging. It would work in the classroom or as an online resource.
Refraction1
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Refraction1

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First in a series of presentations on refraction. Introduces the fundamental ideas. Designed as an online resource for Year 10.
Investigating Refraction1
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Investigating Refraction1

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Practical description of this investigation. Analysis of measurements demonstrated. Data for analysis and evaluation included. Designed as an online resource.
Refraction2
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Refraction2

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An extension of refraction1. Lots of ray diagrams with labels. Introduction of refractive index equation.
Thermal energy2
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Thermal energy2

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Following on from thermal energy1, this resource focuses on the relationship between change of state and temperature.
Thermal Energy1
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Thermal Energy1

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Introducing the relationship between thermal energy, temperature and kinetic energy of particles.
Resultant Force2
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Resultant Force2

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Building on the ideas from Resultant Force1. This work analyses a skydiver in freefall who then pulls his parachute. How the forces acting vary and how this changes the resultant force and hence the acceleration. There is a Resultant Force3 file which assesses the learning from this work.