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Science (physics, chemistry, biology) resources for Keystage 3, 4, and 5 (GCSE and A-level).

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Science (physics, chemistry, biology) resources for Keystage 3, 4, and 5 (GCSE and A-level).
Forces in balance: Types of forces, Newton's 3rd law
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Forces in balance: Types of forces, Newton's 3rd law

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Topic: Forces in balance: Types of forces 1. Define and identify different types of forces. 2. Identify force pairs by using Newton’s third law. Level: GCSE, key stage 4 I am following the AQA science (physics) syllabus but this resource is suitable for anyone teaching KS3 or KS4 science (specifically physics). Resources: 1. Powerpoint slides: powerpoint slides, compatible with a worksheet/handout. Slides contain information and tasks for pupils. 2. Notes (editable documents) for pupils: Use this as worksheet or handout. Pupils can take notes during lesson and complete tasks in this editable document. Contains 3 exam practice questions. 3. Mark scheme for 3 exam practice questions. Hope this resource is helpful for you. Please do let me know if there's any suggestions for improvement. I aim to upload more lessons following this topic. Check out some bundles I've put together. Enjoy!
Forces in motion: Resultant forces, adding force vectors
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Forces in motion: Resultant forces, adding force vectors

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Topic: Forces in balance: Resultant forces 1. Define and calculate resultant force. 2. Add forces in two dimensions. Level: GCSE, key stage 4 I am following the AQA science (physics) syllabus but this resource is suitable for anyone teaching KS3 or KS4 science (specifically physics). Resources: 1. Powerpoint slides: powerpoint slides, compatible with a worksheet/handout. Slides contain information and tasks for pupils. 2. Notes (editable documents) for pupils: Use this as worksheet or handout. Pupils can take notes during lesson and complete tasks in this editable document. Contains exam practice question at the end. 3. Mark scheme for exam practice question. Hope this resource is helpful for you. Please do let me know if there's any suggestions for improvement. I aim to upload more lessons following this topic. Check out some bundles I've put together. Enjoy!
Hooke's Law | Stretching Springs | Spring Constant | Elastic Potential Energy
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Hooke's Law | Stretching Springs | Spring Constant | Elastic Potential Energy

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Hooke’s Law KS4 Science Physics / KS5 Recap for the topic of materials in physics L.O. To investigate how force is related to extension of a material by Hooke’s Law. To calculate the force required to extend a spring. To calculate the elastic potential energy stored in a spring. The Powerpoint presentation includes 17 slides. They contain theory, tasks, practical experiment, and questions with solutions. Some texts and images are animated, such that they appear upon click. There is a handout to go along with the practical of investigation Hooke’s law (stretching a spring using slot masses and measuring its extension.) A worksheet is included. I’ve used this sheet as homework, but you can also use it as classwork. Enjoy!
Efficiency / Energy efficiency / Power efficiency / Efficiency calculation
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Efficiency / Energy efficiency / Power efficiency / Efficiency calculation

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Topic: Energy efficiency / Power efficiency Level: GCSE, key stage 4 I am following the AQA science (physics) syllabus but this resource is suitable for anyone teaching KS4 physics. Resources: 1. Powerpoint slides: This includes starter task, theory notes, small tasks, and plenary task. 2. Notes for pupils: Use this document as worksheets or handouts. Pupils can take notes during lesson or complete tasks in this editable document. Also, it includes exam style questions. Hope this resource is helpful for you. Please do let me know if there's any suggestions for improvement. I aim to upload all my lessons on "Energy and Energy Resources" so that you can have a complete set of lessons for this unit. Enjoy!
Graphical skills, experimental and scientific methods, cone parachute practical
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Graphical skills, experimental and scientific methods, cone parachute practical

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Topic: Cone parachute practical - Handling data, scientific methods, independent and dependent variables, plotting graphs, analysing graphs, linear and proportional relationship Level: GCSE, key stage 4 I am following the AQA science (physics) syllabus but this resource is suitable for anyone teaching KS3 or KS4 science (specifically physics). I will use this lesson to teach a class of year 9, beginning their GCSE course. Resources: 1. Powerpoint slides: powerpoint slides, compatible with a worksheet/handout. Slides contain information and tasks for pupils. 2. Notes (editable documents) for pupils: Use this as worksheet or handout. Pupils can take notes during lesson or complete tasks in this editable document. Hope this resource is helpful for you. Please do let me know if there's any suggestions for improvement. I aim to upload more lessons following this topic. Enjoy!
Ecosystems | Niches | KS3 Science (Biology)
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Ecosystems | Niches | KS3 Science (Biology)

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L.O. To describe how different organisms co-exist and to identify niches within an ecosystem. Perfect for key stage 3. Notes are written for each slide in the powerpoint. Solutions to tasks and questions are also included in the powerpoint so that pupils can mark their own work. There are 24 slides in total, 6 of which are revision slides for the unit of “ecosystem”. Enjoy!
Changing States / Chemical Bonds / States of Matter
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Changing States / Chemical Bonds / States of Matter

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This resource is useful for pupils learning changing states in ks4. Here's the structure of the lesson: 1. Particle models for solid, liquid, gas 2. State changes 3. Metallic / ionic / covalent bonds 4. Melting points 5. Multiple choice short quiz Enjoy!
Momentum
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Momentum

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Resources (including questions) for pupils learning momentum and conservation of momentum.
Metallic Bonding / Properties of Metals
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Metallic Bonding / Properties of Metals

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Lesson structure: 1. Pupils consider how electrical appliances are powered. 2. Pupils learn keywords to describe metals and non-metals. 3. Pupils explain why metals have high melting points. 4. Pupils explain why metals conduct electricity. 5. Pupils explain why metals are flexible. 6. Plenary task: "Exit Card" 7. Extension task: Matching keywords to descriptions.
Liquid Pressure | Floating and Sinking | Density | Pressure
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Liquid Pressure | Floating and Sinking | Density | Pressure

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This set of powerpoint presentations consists of 25 slides (around 1.5 to 2 hours of work for students). Students will learn to explain why the pressure in a liquid varies with depth and density. Afterwards, they will progress onto learning the physics of floating and sinking objects, and the factors that influence it. Enjoy!
Electricity / Revision / Question Booklet / Notes
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Electricity / Revision / Question Booklet / Notes

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This resource is a booklet of questions for the unit of electricity in A-level Physics. I have also included the answers in a separate document. In each question, I have included the theory necessary for pupils to complete the question. It is structured in the form (1) Theory, (2) Question, (3) Multiple Choice Answers. The questions range from Basic, Medium, to Challenge. There are 14 questions in total. Enjoy!
Energy / Revision / GCSE / Alevel / Question Booklet / Notes
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Energy / Revision / GCSE / Alevel / Question Booklet / Notes

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Here is a resource (booklet of questions) for Energy revision. I began each question covering the theory that the pupils would need to know before answering the question. Therefore, each booklet serves the purpose of revision notes as well. Answers are included in separate documents. Here are the topics covered (the more difficult questions are aimed at A-level pupils): Energy transfer Kinetic Energy Gravitational Potential Energy Conservation of Energy Renewable / Non Renewable Energy Work Done Centripetal Force Weight Terminal Velocity Gravitational Attraction Gravitational Acceleration Enjoy!
Energy stores | Types of energy | Energy transfer
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Energy stores | Types of energy | Energy transfer

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Topic: Energy / Energy stores / Types of energy Level: GCSE, key stage 4 I am following the AQA science (physics) syllabus but this resource is suitable for anyone teaching KS4 physics on Energy Stores ( or previously known as Different Types of Energy). Resources: 1. Powerpoint slides: 18 slides with clickable items for navigation. Answers to questions in slides reveal upon clicking. I have written “Presenter’s notes” under some slides, mostly about extension ideas and some simple notes on the theory. 2. Notes for pupils: Use this 3 page document as worksheets or handouts. Pupils can take notes during lesson or complete tasks in this editable document. Also, it includes 1 exam style question. 3. Printout: A list of descriptions (clues) for pupils to read and guess which energy store the description is referring to. (This can be cut out and put in a hat for pupils to pick out.) This makes Task 1 in the powerpoint interactive. Hope this resource is helpful for you. Please do let me know if there’s any suggestions for improvement. I aim to upload all my lessons on “Energy and Energy Resources” so that you can have a complete set of lessons for this unit. Be sure to check out this bundle I’ve uploaded for the unit of Energy (107 Slides for £8 only!): https://www.tes.com/teaching-resource/energy-energy-transfer-energy-stores-ks4-gcse-science-physics-whole-unit-11891651 Enjoy!
Rock Cycle
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Rock Cycle

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L.O. To use the rock cycle to explain how the material in rocks is recycled. Perfect for key stage 3. The slides include theory and interactive exercises for the students.
Magnetism and Electromagnetism | KS4 physics | GCSE | Magnets | Magnetic Fields | Magnetic Force
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Magnetism and Electromagnetism | KS4 physics | GCSE | Magnets | Magnetic Fields | Magnetic Force

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(Updated April 2018) This set of powerpoint presentations consists of 37 slides (around 4 to 5 hours of work for students), including step-by-step instruction for 2 practicals. Learning objectives covered: Explain what is meant by the poles of a magnet. Plot the magnetic field around a bar magnet. Describe magnetic materials and induced magnetism. Describe the Earth’s magnetic field. Describe the magnetic effect of a current. Use Fleming’s Left Hand Rule to predict the direction of force on current-carrying wire in a magnetic field. Use the equation F=BIL. Summary questions and answers (appear on click) are included in the slides. Be sure to check out my bundles! Enjoy!
Magnetism and Electromagnetism | 37 slides & knowledge organiser (5 to 7 Lessons) | KS4 Physics
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Magnetism and Electromagnetism | 37 slides & knowledge organiser (5 to 7 Lessons) | KS4 Physics

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Powerpoint Presentations Updated April 2018 This set of powerpoint presentations consists of 37 slides (around 4 to 5 hours of work for students), including step-by-step instruction for 2 practicals. Learning objectives covered: Explain what is meant by the poles of a magnet. Plot the magnetic field around a bar magnet. Describe magnetic materials and induced magnetism. Describe the Earth’s magnetic field. Describe the magnetic effect of a current. Use Fleming’s Left Hand Rule to predict the direction of force on current-carrying wire in a magnetic field. Use the equation F=BIL. Summary questions and answers (appear on click) are included in the slides. Revision Matt / Knowledge Organiser Included is also a knowledge organiser for the topic of Magnetism and Electromagnetism. Enjoy!
Radioactivity multiple choice questions GCSE key stage 4 Science (Physics)
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Radioactivity multiple choice questions GCSE key stage 4 Science (Physics)

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Here’s a collection of multiple choice questions (with answers) for Radioactivity, suitable for GCSE key stage 4 level science (physics). They are a mixture of exam-style MC questions and exam-style questions that I have modified into MC questions. I can easily upload these worksheets online and ask my students to either highlight their answers or type their answers into a word document. I’ve separated the MC questions into sections so that you can use them as worksheets or homework. There are 11 sections in total: structure of atoms isotopes stability alpha decay beta decay gamma radiation penetration power half-life dangers and application of radiation fusion/fission nuclear reactors