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I am currently a Lecturer in Engineering Design at a University, prior to this I worked in secondary schools as a specialist physics teacher. My experience from working at these levels of education has emphasised the need to ensure fundamentals in science are mastered by students for continued success in education & beyond. My resources aim to clearly communicate complex scientific principles through clear visuals and explanations - with well structured tasks to practice what has been learnt.

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I am currently a Lecturer in Engineering Design at a University, prior to this I worked in secondary schools as a specialist physics teacher. My experience from working at these levels of education has emphasised the need to ensure fundamentals in science are mastered by students for continued success in education & beyond. My resources aim to clearly communicate complex scientific principles through clear visuals and explanations - with well structured tasks to practice what has been learnt.
GCSE AQA Physics - P6.4 Internal Energy
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GCSE AQA Physics - P6.4 Internal Energy

(8)
New GCSE AQA Physics lesson on 'Internal Energy' written in line with new AQA Physics specification. Lesson Outline: Starter discussed whether a glass of water has energy of not to see what conclusions pupils can draw on this from previous lessons. This leads to a view of a substance on a microscopic scale to highlight that the particles are moving, therefore pupils should be able to deduce must have energy in order to move. Internal energy is then shown to be this energy in substance due to kinetic energy and potential energy. After revisiting the starter how to increase internal energy is discussed The different states of matter are review again but now in relation to internal energy with helpful graphics to support these points. How much energy in a substance is related to specific heat capacity which is typically covered earlier in the course so this provides a great opportunity to review of this topic. Lesson concludes with review questions. Lesson Objectives: - Explain what is meant by internal energy. - Identify and explain how you can increase internal energy. - Relate internal energy to properties of solids, liquids and gases. - Explain how particles in a gas exert a pressure.
GCSE AQA Physics - Force & Elasticity
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GCSE AQA Physics - Force & Elasticity

(2)
New GCSE AQA Physics lesson on Forces and Elasticity written in line with new AQA Physics specification. Lesson starts by discussing what elasticity is in relation to familiar, everyday objects which then challenge pupil thinking with ‘slo-mo’ videos of these objects being impacted. Elasticity is then further explored with compression and tension in springs and also related to other objects. To assist pupils in their understanding of the force extension graphs for materials proportionality is reviewed mathematically. A class experiment is detailed using simple Physics equipment to test everyday materials for to produce a force-extension graph. Conclusions can then be drawn from the data produced in this experiment. Hooke’s law is detailed and related to a simply spring extension experiment and used to highlight spring constants. Plenary poses a summary question for pupils to answer with detailed responses showing their understanding of elasticity. Learning Objectives: - Identify objects in compression or tension. - Explain what is meant by a proportional relationship. - Describe an experiment to extension of an object due to force applied. - Interpret and draw conclusions from a force-extension graph.
GCSE 9-1 AQA Physics P11.1 - Pressure and Surfaces
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GCSE 9-1 AQA Physics P11.1 - Pressure and Surfaces

(2)
New GCSE AQA Physics lesson on ’ Pressure and Surfaces’ written in line with new AQA Physics specification. All questions provided with answers within power point. Starter looks at a balloon being pressed down onto a bed of nails - details of how to set this up simply with thumbtacks (obvious as it is) can be found in the notes box. Following this a problem of dog trapped on thin ice is presented for pupils to come up with potential rescue attempts to avoid breaking the ice. The concept of pressure is consolidated with the example of thumb tack being pressed into a wall - the equation for pressure is then detailed. To make use of the pressure equation an elephant and person in stiletto heels are compared mathematically to find which exerts the greatest pressure. Pupils are then guided to calculate the amount of pressure they exert onto the floor whilst standing. The lesson is concluded with a set of review question. Lesson Objectives: - State what pressure is and be able to calculate it. - Identify the units for pressure. - Explain the relationship between pressure, force and area. - Apply knowledge of pressure to different problems.
GCSE 9-1 AQA Physics  4.5 - Forces in Balance Bundle
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GCSE 9-1 AQA Physics 4.5 - Forces in Balance Bundle

5 Resources
5 Lessons on GCSE AQA Physics 'Forces in Balance. Lessons include: - Vectors and Scalars. - Resultant Forces. - Centre of Mass. - Moment, Gear and Equilibrium. - Resolution of forces (Parallelogram/Geometric method. Please see individual item listing for details on each individual lesson. ALL lessons have answer keys in the PowerPoint
GCSE 9-1 AQA Physics - P11.4 - Upthrust and Flotation (How things float)
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GCSE 9-1 AQA Physics - P11.4 - Upthrust and Flotation (How things float)

(0)
New GCSE AQA Physics lesson on ’ Atmospheric Pressure’ written in line with new AQA Physics specification. All questions provided with answers within power point. (Required for GCSE Physics only Higher tier) Lesson Objectives: - Explain how upthrust acts on an object in a fluid. - Identify the key factors that contribute to upthrust of an object in a fluid. - Relate pressure in a fluid to upthrust. - Predict whether a variety of objects will float or sink.
GCSE 9-1 AQA Physics 4.6 - Light and Lenses (whole unit resourced)
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GCSE 9-1 AQA Physics 4.6 - Light and Lenses (whole unit resourced)

5 Resources
NOTE: The lenses lesson (listed as lesson 4) had been missing from this bundle, this had now been rectified. 5 lessons covering the unit of Light and Lenses for AQA GCSE Physics. Lesson include: Reflection of Light ( Refraction of Light Light and Colour Lenses Using Lenses Please read individual resources descriptions for each item in the bundle for further detail.
GCSE 9-1 AQA Physics 4.6 - Wave Properties  (whole unit resourced)
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GCSE 9-1 AQA Physics 4.6 - Wave Properties (whole unit resourced)

5 Resources
5 lessons covering the unit of Wave Properties for AQA GCSE Physics. Lesson include: Properties of Waves Reflection and Refraction of Waves Sound Ultrasound Seismic Waves Please read individual resources descriptions for each item in the bundle for further detail.
GCSE 9-1 - AQA Physics 4.7 - The Motor Effect
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GCSE 9-1 - AQA Physics 4.7 - The Motor Effect

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New GCSE AQA Physics lesson on the motor effect written in line with new AQA Physics specification. All questions provided with answers within power point. Lesson Objectives: Explain the ‘motor effect’; Recall and use Flemings left-hand rule State what is meant by magnetic flux density Calculate the force on a current carrying wire Detail how a simple electric motor works
GCSE AQA Physics - Reflection of Light (Diffuse and specular reflection)
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GCSE AQA Physics - Reflection of Light (Diffuse and specular reflection)

(0)
New GCSE AQA Physics lesson on 'Reflection of Light (Diffuse and specular reflection) ’ written in line with new AQA Physics specification. Lesson Objectives: Identify and explain different methods of reflecting waves. Investigate the law of reflection. Draw ray diagrams for different objects. Explain and draw virtual images. Explain what happens to light rays when they reflect of different types of surfaces.
GCSE AQA Physics - P14.3 - Light and Colour
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GCSE AQA Physics - P14.3 - Light and Colour

(2)
New GCSE AQA Physics lesson on 'Light and Colour ’ written in line with new AQA Physics specification. Lesson Objectives: Identify what is meant by the visible light spectrum. Detail the different colours on the visible light spectrum and relate to wavelength. Explain how surfaces appear to be certain colours. Compare and contrast translucent and transparent objects and their interaction with light. (upated 07/11/2019)
GCSE Physics P2 - Acceleration and Velocity - time graphs (v-t graphs)
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GCSE Physics P2 - Acceleration and Velocity - time graphs (v-t graphs)

(1)
Completely resourced lesson on velocity-time graphs with key content from AQA and Edexcel Physics. Lesson begins with a starter to get pupils thinking about acceleration whilst recapping terminal velocity. A prompt questions focuses on cars 0-60 mph time so pupils to discuss what acceleration is and what affects it. The acceleration equation is covered in detail clearly highlighting the units used - followed by questions to use the equation. Speed and velocity are contrasted whilst explaining what is meant by vectors and magnitude. The main task uses a movie car chase sequence for pupils to record the time between key incidents which are associated with a set velocity allowing a v-t graph to be produced, this allow for a discussion of v-t graph trends related to data. Key v-t trends are highlighted following this. Acceleration is related to the gradient of a v-t graph very clearly as done in the d-t graph lesson. This allows for a more detailed analysis of the car chase v-t graph (worksheet included). Plenary relates v-t graphs to d-t graphs and uses a v-t graph of a skydive for further questioning (also reviews terminal velocity).
GCSE AQA Physics - P7.4 - Alpha, beta and gamma properties
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GCSE AQA Physics - P7.4 - Alpha, beta and gamma properties

(0)
A complete and detailed lesson on Radioactivity, focusing on the properties of alpha, beta and gamma radiation & a second lesson on uses of nuclear radiation (created with AQA and Edexcel specification content). PROPERTIES OF NUCLEAR RADIATION 1) Review the characteristics of the 3 types of nuclear radiation. 2) Identify the penetrating power and range of type of radiation. 3) Explain what is meant by ionising radiation and relate to the three types and applications of this. 4) Compare and contrast the effect of magnetic and electric fields of nuclear radiation. Pupils are prompted to post questions they have on nuclear radiation so far and in general which can be discussed by the class to serve as some recap on the previous lesson, deal with misconceptions and highlight progress when these may be answered during the lesson (and previous lessons). Pupils recap the content of the previous lesson on the characteristics of the 3 types of radiation as this is important to the current lesson and exercises their knowledge on the subject. Penetrating power and range of the types of radiation is covered in detail using animations. Ionisation is reviewed by challenging pupils through questioning relating to previous content. This is then related to radiation and the types ability to ionise atoms. This lead to descriptions of photographic film and a detailed description of how the geiger-muller counter work with a bespoke animation to assist this. Deflection of radiation is covered through questioning using clear imagery and animations to support pupils. This leads to literacy based task for pupils to compare and contrast different types of radiation and their path through an electric field.
GCSE AQA Physics - P1.8-9 -  Electrical Appliances, Energy and Power
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GCSE AQA Physics - P1.8-9 - Electrical Appliances, Energy and Power

(4)
New GCSE AQA Physics lesson on 'Energy and Power of Electrical Devices' written in line with new AQA Physics specification. Starter gets pupils discussing common electrical devices and the useful and wasteful energy transfers they make. To start looking at Power pupils discuss what power means for familiar figures. Main includes a clear description of what Power is in Physics and an explanation of the units. This lead onto clear example of using the equation and to a classroom activity looking at power rating of electrical devices and making energy transferred calculation from them. Included is a review of the power efficiency calculation with examples. A task sheet allows pupils practice use of the lessons knowledge. A final line of questioning draws on knowledge of previous topics to review and consolidate content. Lesson Objectives: 1) State and explain what power is and the unit for power. 2) Relate power ratings to different electrical devices. 3) Calculate power rating of electrical devices. 4) Calculate the energy used and wasted by devices and therefore their efficiency. Worksheet includes 'Energy & Power' task to be printed on one A4 sheet to save on printing. Set-up to print '2 pages per sheet' to produce one worksheet.
GCSE AQA Physics - P5.3 - Electrical Power and potential difference
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GCSE AQA Physics - P5.3 - Electrical Power and potential difference

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New GCSE AQA Physics lesson on 'Electrical Power and potential difference' written in line with new AQA Physics specification. Starter looks at the power of different devices of very different orders of magnitude. Following this a quick activity looks at powers and conversion using Watts as the unit to convert - reviews nW, µW, mW, W, kW, MW, GW. The power and energy transferred equation is reviewed briefly through review questions. The equation for power using voltage and current is introduced and how to re-arrange it. Fuse ratings are discussed with appropriate choice of fuse rating highlighted. Energy transfer by heating in conductors/resistors is reviewed and then related to the Power equation using resistance and current. How to re-arrange this is shown in detail. The lesson concludes with a series of review questions and exam style questions. Lesson Objectives: 1) State a definition for power. 2) Calculate the power of an appliance by the energy transferred. 3) Relate potential difference and current to electrical power. 4) Identify appropriate fuse ratings for appliances. 5) Identify the uses of resistance in conductors and calculate power using resistance.
GCSE Physics AQA - P7.8 - Nuclear Fusion
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GCSE Physics AQA - P7.8 - Nuclear Fusion

(1)
New GCSE AQA Physics lesson on 'Nuclear Fusion ’ written in line with new AQA Physics specification. Lesson Objectives: State and explain what is meant by Nuclear Fusion. Explain the process of nuclear fusion. Identify the reactants and products in a nuclear fusion reaction. Write nuclear fusion reactions. Apply knowledge of nuclear fusion and fission to compare and contrast both methods for generating electricity.
GCSE AQA Physics - Scalars and Vectors (+ Forces)
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GCSE AQA Physics - Scalars and Vectors (+ Forces)

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New AQA GCSE lesson on Scalars and Vectors (+ Forces) written in line with new GCSE AQA specification. All questions provided with answers within power point. Starter asks how far away a school is from a home - this prompts responses from pupils that either follow the road or straight across the field. This introduces the idea of distance and displacement which is explained in detail. This is also used to explain magnitude, scalars and vectors. A series of questions review pupils understanding of distance and displacement. A quick class activity reviews a number of different variables to classify each as scalar or vector. Speed and Velocity are identified as a scalar and vector by reviewing the equations and then also related to acceleration. This leads to force the representation of force vectors and scale diagrams. A quick review of forces and different types of forces lead to force interactions and their effects. A set of review questions provides use of force vectors. Lesson Objectives: - Explain how displacement and distance are different. - Identify and explain scalar and vector quantities. - Identify different types of forces and how these can be represented. - Explain what the effect of simple force interactions will have on objects.
GCSE Physics P1 - U-values and Payback time
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GCSE Physics P1 - U-values and Payback time

(0)
Complete lesson on u-values and payback time with key content from AQA Physics. Starter includes 10 questions to serve as a summary of previous heat transfer content. Main includes simple insulation experiment leading to explanation of u-values explaining the units clearly. Pupils often get confused with U-values and what they mean, direct link to experiment can help by discussing results from the experiment and which material would have a higher or lower u-value. U-values related to key home insulation methods, this lead onto cost effectiveness and payback time. Plenary uses exam style questions including a 6 mark question. More lessons to follow in same format for P1. https://www.tes.com/member/Nteach
GCSE Physics P1 - Specific Heat Capacity
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GCSE Physics P1 - Specific Heat Capacity

(3)
GCSE lesson on specific heat capacity including key content from AQA GCSE Physics. Includes an example which could be used as an teacher demo if wished for starter. Lesson focuses on words to inform what specific heat capacity means to help understand the equation and units. Questions included for practice of using equation for exam to secure marks in exam. Also an exam question is attached at the end. More P1 lessons in same format. https://www.tes.com/member/Nteach
GCSE Physics P1 - Heat transfer by design
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GCSE Physics P1 - Heat transfer by design

(0)
Complete lesson on heat transfer by design with key content from AQA Physics. Starter includes a simple teacher demo and competition if you wish to make it that way. Main includes simple challenge for pupils using simple equipment and key information and tasks on heat transfer applications. Plenary uses 6 mark exam question. Home structure included for pupils that would prefer to not draw their own for home insulation task. More lessons to follow in same format for P1. https://www.tes.com/member/Nteach