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GCSE Physics Momentum

Revising for your GCSE physics exam? Learn about momentum in this video!Music credits: https://www.bensound.com/


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Momentum Higher Tier Only A moving object has momentum which is defined by the equation: p = mv Where: p = momentum in kilogram metre per second (kg m/s) m = mass in kilograms (kg) v = velocity in metres per second (m/s) This means that an object at rest (i.e v = 0) has no momentum


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With what force did she hit the ball? We first need to work out the momentum of the ball using the equation momentum = mass x velocity. Remember that mass is always in kg. Momentum = 0.05 kg x 70 m/s = 3.5 kg m/s We can then use the equation force = change in momentum / time Force = 3.5 / 5 = 0.7 N


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velocity . Momentum is also a quantity - this means it has both a magnitude and an associated direction. For example, an elephant has no momentum when it is standing still. When it begins to.


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GCSE OCR Gateway Momentum, work and power - OCR Gateway Momentum - Higher Momentum can be thought of as the product of mass and velocity. Momentum helps explain some of the most important.


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Learn about and revise momentum, conservation of momentum, and the relationship between force and momentum in collisions with GCSE Bitesize Physics.


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Momentum for AQA GCSE Physics This page covers the following topics: 1. Momentum 2. Momentum and force 😀 Do you have a revision plan? Get one and accelerate your exam preparation. GET A PLAN The momentum of a moving object can be calculated by multiplying the mass of the object by its velocity.


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When a force acts on an object that is moving, or able to move, there is a change in momentum : in equations, change in momentum is shown as m∆v ∆v is the change in velocity (∆ is the Greek.


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Easy Medium Hard Model Answers 1a 2 marks Higher Only At a paintballing party, a group of children fire paint balls at each other using paintball guns. The paintball guns have a mass of 0.5 kg each. Each paintball inside the gun has a mass of 2.5 g. Describe and explain the momentum of the paintball before the gun is fired.


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Subscribed 6.9K Share 337K views 4 years ago GCSE Physics (9-1) This video covers: - What momentum is - How to calculate the momentum of an object.more.more GCSE Physics -.


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Momentum (GCSE Physics) Momentum Momentum Calculating Momentum The momentum of an object is a measure of how hard it is to stop. It depends on two factors: Mass - the heavier an object, the harder it is to stop. Velocity - the faster an object is moving, the harder it is to stop. We can calculate momentum using the following equation: Where:


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AQA GCSE 9-1 Physics Momentum Lesson. Lesson Objectives. Understand the factors that affect momentum and solve momentum problems. Success Criteria. All - Recall the factors that affect momentum and create a formula triangle. Most - Use the equation p=mv to solve a number of problems for momentum. Some - Solve problems involving the.


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PeterPremium. Private GCSE Physics Tuition. I specialise in A Level Physics primarily AQA, but also all other Boards. I also teach all A Level Maths subjects. At GCSE and iGCSE, I teach maths, further maths and physics. I also assist A Level students with entrance tests such as the Engineering Tests for Cambridge etc.


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AQA GCSE Physics Revision. January mocks on the horizon? Kick-start your revision with our 2-day online Mock Preparation courses. Suitable for separate and combined science higher level students. Science AQA GCSE and Edexcel IGCSE - 2-3rd and 5-6th January.


KS4/GCSE Physics Momentum & Collisions Revision Resources For Dyslexics

Topic Specification Momentum Revision Momentum Momentum is a property of all moving objects. It depends on mass and velocity. Momentum Momentum is a vector, meaning it has magnitude and direction. It is defined by the equation: \textcolor {aa57ff} {p = mv} p = mv \textcolor {aa57ff} {p} p is the momentum in kilogram metres per second


GCSE Physics Momentum

Momentum is the product of a moving object's and velocity . \ (\text {Momentum} = \text {mass}\times \text {velocity}\) The symbol for momentum is \ (p\) so this can also be written as: \.