problem and check your answer with the step-by-step explanations. Group Code Registration Form; Biology Reading List; Chemistry Reading List; The Ultimate guide to the EPQ; UCAS and University; For Parents . As with any form of work, energy is transferred when electrical work is done. Current is just the rate of charge flow, I = Q/t. done worksheet questions answers formula triangle force gcse students tes calculating foundation resources. Richard looks at mechanical work done for your GCSE Physics exam. We can calculate energy transferred in one of two ways. Work done (in Joules) = force (in Newtons) x distance moved (in Metres) Look at the units of the formula. Please submit your feedback or enquiries via our Feedback page. Power & Work Done If the force and 2. Question: A hair dryer does 45,000J of work in one minute. Ideal for preparing your for GCSE Physics exam. Conservation of energy links GPE, KE and work done. is only true when the distance moved by the object. Required fields are marked *. Work is a measure of the amount of energy transferred to a object when it is moved by a force. Attach a spring to the end of a clamp stand. Today. Define work done The nergy transferred when a f, Write the equation that links force, work done and displacement Work done = force x displaceme, What units is work done measured in? Your email address will not be published. AQA, OCR, EDEXCEL. Your email address will not be published. Multiplying force and distance produces units of newton-metres (N m) Work is measured in Joules (J) Connect with a tutor from a university of your choice in minutes. We can calculate a value for power using two different formulas. Work must be done to move electrons, which produces a flow of current. AQA GCSE challenging worksheet for grade 9, high demand quesitons sorted by section. We can calculate work done using the following formula: *Distance is the distance moved along the line of action of the force, Again, we can refer to the formula for work done. Connect with a tutor from a university of your choice in minutes. (1x 1 = 1), Your email address will not be published. Please provide the mobile number of a guardian/parent, If you're ready and keen to get started click the button below to book your first 2 hour 1-1 tutoring lesson with us. Embedded content, if any, are copyrights of their respective owners. Strictly speaking, work done = force x distance. In each situation, one type of energy is transferred into other type(s) of energy. Your email address will not be published. It would be great to have a 15m chat to discuss a personalised plan and answer any questions. How to help your child succeed in exams; How to succeed in . For more info visit www.senecalearning.com . The amount of work done is the amount of energy required to do something. Calculating work done. Combined Science (also known as Double Science) is where you study the three sciences together and receive a combined grade of 2 GCSEs. A constant kinetic frictional force of 80N impedes the motion of the box. Whenever the force and displacement vector are parallel to each other, the work done on an object The equation for work done is one that you need to be able to recall and apply: Work Done = Force x distance. Mechanical work involves using a force to move an object. A car drives 10 m up a hill at constant speed, as shown, If its weight is 15 kN and there is a frictional force of 4 kN acting between its tyres and the road surface, calculate: Find my revision workbooks here: https://www.freesciencelessons.co.uk/workbooksIn this video, we look at what is meant by work done and how to calculate this. Calculating Work Done. Specific Latent Heat Calculations (GCSE Physics), Specific Heat Capacity Calculations (GCSE Physics), Producing and Absorbing Radio Waves (GCSE Physics), Properties of Electromagnetic Waves (GCSE Physics), Applications of Electromagnetic Waves (GCSE Physics), Waves for Detection & Exploration(GCSE Physics), Step Up & Step Down Transformers(GCSE Physics), Ratio of Potential Differences (GCSE Physics), Induced Potential & the Generator Effect(GCSE Physics), Associated Hazards and Precautions (GCSE Physics), Radioactive Irradiation and Contamination (GCSE Physics), Penetration and Ionisation (GCSE Physics), Charge, Mass Number & Atomic Number (GCSE Physics), Development of the Atomic Model Part 1 (GCSE Physics), Development of the Atomic Model Part 2 (GCSE Physics), Changes in Thermal Energy (GCSE Physics), Calculating Distance Travelled (GCSE Physics), Uniform Acceleration Calculations (GCSE Physics), Curved Distance-Time Graphs (GCSE Physics), Distance-Time Graph Calculations (GCSE Physics), Distance-Time Relationship (GCSE Physics), Speed Calculation Examples (GCSE Physics), Gravitational Field Strength (GCSE Physics), More on Static Electricity (GCSE Physics), Series and Parallel Circuits (GCSE Physics), Alternating and Direct Potential Difference (GCSE Physics), Power: Current and Resistance (GCSE Physics), Power: Current and Potential Difference (GCSE Physics), Investigating Current-Voltage Characteristics (GCSE Physics), Sound Waves Through Solids (GCSE Physics), Measuring the Speed: Water Waves (GCSE Physics), Measuring the Speed: Sound Waves (GCSE Physics), Types of Nuclear Radiation (GCSE Physics), Radioactive Decay & Half Life (GCSE Physics), The Law of Conservation of Energy (GCSE Physics), Energy Changes in a System (GCSE Physics), The Elastic Potential Energy Equation (GCSE Physics), Using the Gravitational Potential Energy Equation (GCSE Physics), Gravitational Potential Energy (GCSE Physics), Energy Transfers in Electronic Appliances (GCSE Physics), Comparing the Rate of Energy Transfer (GCSE Physics), Factors Affecting Braking Distance (GCSE Physics), Transporting Electrical Energy (GCSE Physics), Energy Resources: Trends in Usage (GCSE Physics), Non-renewable Energy Sources (GCSE Physics), Energy Resources: Electricity Generation (GCSE Physics), Heating and Cooling Graphs (GCSE Physics), https://www.medicmind.co.uk/medic-mind-foundation/. Electrical work involves a current transferring energy. Convert into seconds. Work done has the same units as energy joules. b) the amount of work it does against gravity. ngx-pagination install Coconut Water physics worksheets resources. Start studying GCSE AQA Physics Work done and energy transfer. . Work Done Equation. This is because energy is the ability to do work. Learn vocabulary, terms, and more with flashcards, games, and other study tools. The work done by friction is usually negative since the kinetic friction force vector The car takes 20m to come Required fields are marked *. Work is done when a force is used to move an object. Pinterest. Work Done By a Constant Force & Energy Transfer. Example 3: Richard looks at mechanical work done for your GCSE Physics exam. (c) How much work is done on the crate if the crate returns to rest due to friction. Mark 1 - Work done is proportional to elastic potential energy stored in the spring. b) The box does not speed up or slow down during this time. Work Done Work is done when charge flows in a circuit. You do not have to do work if you have energy though (potential energy does not do work). Power is the rate of transfer of energy or the rate of doing work. Resultant forces do work to move objects. Below is the equation that relates work done, force applied and distance travelled in the direction of the force. In this instance, we need to rearrange the equation to make power the subject. Your email address will not be published. Combined Science exams have different names with . Another man pushes a crate as shown with a force of 550 N and soes 2.2 kJ of work. calculating bing. You can rearrange this equation with the help of the formula triangle: Use the formula triangle to help you rearrange the equation. Electrical work involves a current transferring energy. Pick a time-slot that works best for you ? Be able to calculate Gravitational Potential Energy in a lifted object. We will calculate the energy transferred by electrical work in the next tutorial. Work Done and Power. Remember the formula: work done = force distance . Find my revision workbooks here: https://www.freesciencelessons.co.uk/. About me. Worksheets are a crucial portion of researching english. It contains a pupil worksheet with blanks and a teachers sheet with answers. Work is done whenever a force moves something. GCSE Physics revision Energy stores and systems Conservation and dissipation of energy Current, potential difference and resistance Mains electricity Energy transfers Static electricity Changes of state and the particle model Internal energy and energy transfers Particle model and pressure Atoms and isotopes Atoms and nuclear radiation Nuclear fission and fusion Forces and their interactions . Each worksheet can be printed out for use in class or viewed on mobile devices - they also include a set of answers and a video with explanations and how to approach that style of question. This video relates to the AQA (9-1) GCSE Physics specification which will be examined for the first time in 2018. Specific Latent Heat Calculations (GCSE Physics), Specific Heat Capacity Calculations (GCSE Physics), Producing and Absorbing Radio Waves (GCSE Physics), Applications of Electromagnetic Waves (GCSE Physics), Properties of Electromagnetic Waves (GCSE Physics), Waves for Detection & Exploration(GCSE Physics), Step Up & Step Down Transformers(GCSE Physics), Ratio of Potential Differences (GCSE Physics), Induced Potential & the Generator Effect(GCSE Physics), Associated Hazards and Precautions (GCSE Physics), Radioactive Irradiation and Contamination (GCSE Physics), Penetration and Ionisation (GCSE Physics), Transporting Electrical Energy (GCSE Physics), Alternating and Direct Potential Difference (GCSE Physics), Power: Current and Resistance (GCSE Physics), Power: Current and Potential Difference (GCSE Physics), Series and Parallel Circuits (GCSE Physics), Drawing Electric Field Patterns (GCSE Physics), Factors Affecting Braking Distance (GCSE Physics), Energy Resources: Trends in Usage (GCSE Physics), Non-renewable Energy Sources (GCSE Physics), Energy Resources: Electricity Generation (GCSE Physics), Energy Resources: Transport (GCSE Physics), The Law of Conservation of Energy (GCSE Physics), Energy Changes in a System (GCSE Physics), Sound Waves Through Solids (GCSE Physics), Measuring the Speed: Water Waves (GCSE Physics), Measuring the Speed: Sound Waves (GCSE Physics), Observations and Questions (GCSE Physics), Using the Gravitational Potential Energy Equation (GCSE Physics), Resolving Parallel & Non-Parallel Forces (GCSE Physics), Free Body Diagram Examples (GCSE Physics), Scalar & Vector Quantities (GCSE Physics), Charge, Mass Number & Atomic Number (GCSE Physics), Development of the Atomic Model Part 2 (GCSE Physics), Development of the Atomic Model Part 1 (GCSE Physics), Changes in Thermal Energy (GCSE Physics), Calculating Distance Travelled (GCSE Physics), Uniform Acceleration Calculations (GCSE Physics), Curved Distance-Time Graphs (GCSE Physics), Distance-Time Graph Calculations (GCSE Physics), Distance-Time Relationship (GCSE Physics), Speed Calculation Examples (GCSE Physics), Gravitational Field Strength (GCSE Physics), More on Static Electricity (GCSE Physics), Investigating Current-Voltage Characteristics (GCSE Physics), Types of Nuclear Radiation (GCSE Physics), Radioactive Decay & Half Life (GCSE Physics), The Elastic Potential Energy Equation (GCSE Physics), Gravitational Potential Energy (GCSE Physics), Energy Transfers in Electronic Appliances (GCSE Physics), Comparing the Rate of Energy Transfer (GCSE Physics), Heating and Cooling Graphs (GCSE Physics), https://www.medicmind.co.uk/medic-mind-foundation/. Try the given examples, or type in your own This will leave you with the following: Joules = newtons x metres (J = N x m) or in other words, Joules = newton-metres (J = Nm). 56J Ideal for preparing your for GCSE Physics exam. Read about our approach to external linking. Work Done By a Constant Force & By Friction, Net Work Calculations. Mark 2 - Until the limit of proportionality. Be able to use the correct units. Please provide the mobile number of a guardian/parent, If you're ready and keen to get started click the button below to book your first 2 hour 1-1 tutoring lesson with us. Moments Questions. A series of free GCSE/IGCSE Physics Notes and Lessons. Ideal for preparing your for GCSE Physics exam. Work done (J) = Force (N) x Distance (m) Example: During braking, a force of 2000N is applied to the brakes of a car. There are different types of work, this one is mechanical work done and we have met electrical work done earlier on in the course. Newtons or N What is distance measured in? Calculate the work done. Pick a time-slot that works best for you ? The following diagram gives the formula for work done by a force. Mark Scheme. Work Done & Energy Transfer A physics lesson on Work done and Gravitational Potential Energy with a supporting worksheet and answers. Work done = 10 2 = 20 J The triangle above may help you to rearrange the equation. Check out my free worksheets. (a) What is the work done by the tension force? Questions. HOME; PRODUCT. Question: What is the power of a car engine that does 4500J of work in 1.5 minutes? Question: An electric lamp transforms 400 J in 8 s. What is its power? a) Through what distance does he push the crate? Work done = Force x Distance . Question: A motor has a power of 12W. We welcome your feedback, comments and questions about this site or page. is antiparallel to an objects displacement. problem solver below to practice various math topics. Science may be split into the three separate sciences (Biology, Chemistry and Physics) or into two combined . We will calculate the energy transferred by electrical work in the next tutorial. A man applies a force of 700 N to a crate and pushes it through a distance of 200 cm. Ways of Work. A man pushes a box with a force of 10 newtons to move it a distance of 2 metres, Home Economics: Food and Nutrition (CCEA). (c) Calculate the net work done on the box. Specifically, a person could not push the box (and so do work) in the example above without energy. Again, we can refer to the formula for work done. seconds = 7200 seconds, To convert to kilojoules: 28800/1000 = 28.8. Work done and energy transfer (examples, solutions, videos, notes). Substitute in the numbers. In this video, we look at what is meant by work done by a force and how this links in to energy transfer. How much energy does the motor transfer in 1 minute? Work done has the same units as energy - joules. Pick a time-slot that works best for you ? For more info visit www.senecalearning.com . Please add some widgets here! Work Done Work Done. The equation that connects work, force and distance is. The lamp from Aryaland has a power of 6W, whilst the lamp from Makam Bulbs has a power of 10W. GCSE Physics - Power and Work Done #7 - YouTube This video covers:- The two definitions of power- Difference between energy transferred and work done- How to use the power equation General. What is 'work done'? These have been honed on lower set pupils and allows differentiation in the following way: In this episode, he will look at the definition of work done and how it can be calculated with the hep of some examples. So you must have energy to do work. Gcse physics. To find the total energy transferred over a sustained period of time, we need to multiply power by the total number of seconds. The amount of work done on an object due to a force can be calculated using the following equation: \textcolor{f21cc2}{W = Fs} \textcolor{f21cc2}{W} is work done in Joules \left(\text{J}\right) \textcolor{f21cc2}{F} is force in Newtons, \left(\text{N}\right) \textcolor{f21cc2}{s} is distance in metres \left(\text{m}\right). The equation requires us to give the time in seconds, so we need to convert. GCSE Science; GCSE Maths; GCSE Further Maths (Level 2, Level 3, FSMQ) GCSE History; GCSE Citizenship; GCSE Geography; For Students . Using Power and Time Power tells us the energy transferred per second. Metres (m) What is mass measured in? In this episode, he will look at what electrical work done is and how it can be calculated. constant. W = F x d. The equation can also be written as. This is a standard format for physics calculations, to be used in class to introduce and practise each formula. Work is done when charge flows in a circuit. How to calculate the net work done on an object? Worksheets to support all areas of GCSE Physics! Find the component of the forc In this GCSE Physics Revision Guide, you will find high quality Work Done GCSE Revision Notes and Past Paper Questions Work is done whenever energy is transferred from one store to another. is positive which causes the speed and kinetic energy of the object to increase. Work and power. The difference between the powers: 10W 6W = 4W, We need the answer in seconds, hence 2 hours = 120 minutes x 60 The rate at which energy is transferred is called power and the amount of energy that is usefully transferred is called efficiency. The formula for work done is: Work done = force distance. In contrast, with Triple Science you study the same three sciences BUT in a little more depth and with extra topics (extended content) and obtain 3 GCSEs. This lesson fully covers the GCSE Physics exam spec 4.5.2.0 / Combined Science 6.5.2.0. Ignoring the rest of the formula, only focus on the units. Or. Forces and elasticity. What is the power rating of the hairdryer? to a stop. Question: Ankit is deciding between purchasing a lamp from Aryaland and a lamp from Makam Bulbs. Example: A secondary education revision video to help you pass your Science GCSE. Substitute in the numbers. Electrical work done. We can substitute in I = Q/t into E = VIt, to give E = V x Q/t x t. This simplifies to E = VQ. Joules (J), If a force is at an angle to the displacement, what must you do before calculating the work done? 3. Our tips from experts and exam survivors will help you through. LESSON LINKSSP8a Work and Power & SP2h Braking distance and energy- Pearson textbook - Edexcel exam boardP1.3 Energy and work - Oxford . Try the free Mathway calculator and Required fields are marked *. Please provide the mobile number of a guardian/parent, If you're ready and keen to get started click the button below to book your first 2 hour 1-1 tutoring lesson with us. Let Mr Thornton simplify what work done is, and how to calculate it - it's easy whe. Stores and Transfers In this episode, he will look at what electrical work done is and how it can be calculated. Follow me! Work Done Braking Work is done when a force acts over a distance. Evs Worksheet For Grade 3 : The 3rd Graders . a) the amount of work it does against fiction. As with any form of ' work ', energy is transferred when electrical work is done. W = fd. W = F x s. W = Work Done (Joules, J or newton-metres, Nm) F = Force (Newtons, N . Richard looks at electrical work done for your GCSE Physics exam. : https://twitter.com/DoodleSciDoodle Science teaches you high school physics in a less boring way in almost no time!Script:Work is the amount of e. K-12 Module In Science Grade 8 [All Gradings] www . . little ones . Watch. In this episode, he will look at the definition of work done and how it can be calculated with the hep of some examples. In this episode, he will look at the definition of work done and how it can be calculated with the hep of some examples. Work Done and Power. Work Done Questions. More Lessons for IGCSE Physics. Example 2: IGCSE Physics Worksheet 3.2 www.scribd.com. It would be great to have a 15m chat to discuss a personalised plan and answer any questions. Work Done Subject: Physics Age range: 14-16 Resource type: Lesson (complete) 0 reviews File previews pptx, 1.12 MB Complete No-Prep lesson with exam questions, tasks and answers on Work Done and Energy Transfer for AQA GCSE (9-1) Science / Physics. Here is a quick recap of what we learnt. Mark Scheme. In this episode, he will look at what electrical work done is and how it can be calculated. This something could be moving an object from point A to point B or by lighting a light bulb light up in a circuit. If we know the braking distance of the car, we can clearly do some calculations here! Scroll down the page for Whenever work is done, energy is transferred from one place to another. . During braking, a force of 2000N is applied to the brakes of a car. Connect with a tutor from a university of your choice in minutes. E = F x d. These equations are important! We then look. Here are some examples of energy transfers. . The amount of work done when a force acts on a body depends on two things: the size of the force acting on the object the distance through which the force causes the body to move in the. Richard looks at electrical work done for your GCSE Physics exam. (Use FAST5 to get 5% Off!). Objectives: Be able to use and rearrange the equation for "Work Done". Related Pages (Use FAST5 to get 5% Off!). When a resultant force acts on an object though a distance, two key things happen. We can also calculate energy transferring using charge and potential difference. Example 1: Work done is equal to energy transferred. Sign in, choose your GCSE subjects and see content that's tailored for you. Energy is a key principle in physics, as it allows work to be done. To do this, work must be done by its brakes. heat lessons complete gcse physics p1 worksheets whole thing done transfer kb tes docx specific capacity conduction convection radiation including. This is because energy is the ability to do work.. Let us look at the first equation, E = Pt. Physics Worksheets | Teaching Resources www.tes.com. Another way of saying how much energy is transferred Work done = force x distance What's 'Work done' and 'energy' measured in? (Use FAST5 to get 5% Off!). English Language is compulsory in all schools, and so is English Literature in the majority of schools, but What kind of science can I do on GCSE? These are perfect for students to work through in lessons or independently at home. Check out more of our AQA GCSE science vide. Maths, English and Science are the core subjects everyone must take at GCSE in England. (b)How much work is done on the crate across the frictionless surface? Save my name, email, and website in this browser for the next time I comment. displacement vectors are perpendicular, no work is done and the objects kinetic energy remains To calculate the work done on an object when a force moves it, use the equation: work done = force distance \ [W = F~s\] This is when: work done (W) is measured in joules (J) force. 17 Pics about Work and power : GCSE Physics Paper 2 - Work done Calculations Worksheet with Answers, K-12 Module in Science Grade 8 [All Gradings] and also GCSE Physics Forces, motion and work done (OCR 9-1) - YouTube. Scientifically Work done formula will be given as, W = F * d. In this case, the force exerting on the block is constant, but the direction of force and direction of displacement influenced by this force is different. Find out more about my background in physics and education. Now that we have the correct values, we can put the numbers into our equation. It would be great to have a 15m chat to discuss a personalised plan and answer any questions. (a) How much work is done by a horizontal force of 150N that acts on a crate for a distance of 10m? Save my name, email, and website in this browser for the next time I comment. To measure the work done in moving an object, two quantities need to be measured. Now, the total work done by this force is equal to the product of the magnitude of applied force and the distance traveled by the body. In this episode, he will look at what electrical work done is and how it can be calculated. How to calculate the work done by a constant force and how to calculate the work done by friction? After A-level and GSCE resources? Save my name, email, and website in this browser for the next time I comment. What happens to the energy transferred by the man? Calculate the amount of work done by the man. Work done is the same as energy transferred. more examples and solutions on how to use the formula. Your email address will not be published. Joules (J) What is force measured in? Kg What is the work done if we apply a 7N force and we move 8 m? (b) How much work is done by friction? Richard looks at mechanical work done for your GCSE Physics exam. Revise how to calculate work done, gravitational potential energy and kinetic energy with BBC Bitesize GCSE Physics. The three different types of work we are . Work out the value for time. Check out more of our AQA GCSE science videos and revision resources at https . calculate work done by a force acting on a force. We need to use the value for time in seconds (which we have just calculated). This is why electrical work done is the energy required to overcome the resistance in the wires of a circuit. We can substitute in P = VI into the equation E = Pt, to give E = VIt. Here is the equation that relates work done, force applied, and distance moved in the direction of the force: In the example above, 10 N is applied to move the box 2 m. The triangle above may help you to rearrange the equation. We previously looked at how to calculate power using work done. Specific Latent Heat Calculations (GCSE Physics), Specific Heat Capacity Calculations (GCSE Physics), Producing and Absorbing Radio Waves (GCSE Physics), Properties of Electromagnetic Waves (GCSE Physics), Applications of Electromagnetic Waves (GCSE Physics), Waves for Detection & Exploration(GCSE Physics), Step Up & Step Down Transformers(GCSE Physics), Ratio of Potential Differences (GCSE Physics), Induced Potential & the Generator Effect(GCSE Physics), Associated Hazards and Precautions (GCSE Physics), Radioactive Irradiation and Contamination (GCSE Physics), Penetration and Ionisation (GCSE Physics), Transporting Electrical Energy (GCSE Physics), Alternating and Direct Potential Difference (GCSE Physics), Power: Current and Resistance (GCSE Physics), Power: Current and Potential Difference (GCSE Physics), Series and Parallel Circuits (GCSE Physics), Drawing Electric Field Patterns (GCSE Physics), Factors Affecting Braking Distance (GCSE Physics), Energy Resources: Trends in Usage (GCSE Physics), Non-renewable Energy Sources (GCSE Physics), Energy Resources: Electricity Generation (GCSE Physics), Energy Resources: Transport (GCSE Physics), The Law of Conservation of Energy (GCSE Physics), Energy Changes in a System (GCSE Physics), Sound Waves Through Solids (GCSE Physics), Measuring the Speed: Water Waves (GCSE Physics), Measuring the Speed: Sound Waves (GCSE Physics), Observations and Questions (GCSE Physics), Using the Gravitational Potential Energy Equation (GCSE Physics), Resolving Parallel & Non-Parallel Forces (GCSE Physics), Free Body Diagram Examples (GCSE Physics), Scalar & Vector Quantities (GCSE Physics), Charge, Mass Number & Atomic Number (GCSE Physics), Development of the Atomic Model Part 1 (GCSE Physics), Development of the Atomic Model Part 2 (GCSE Physics), Changes in Thermal Energy (GCSE Physics), Calculating Distance Travelled (GCSE Physics), Uniform Acceleration Calculations (GCSE Physics), Curved Distance-Time Graphs (GCSE Physics), Distance-Time Graph Calculations (GCSE Physics), Distance-Time Relationship (GCSE Physics), Speed Calculation Examples (GCSE Physics), Gravitational Field Strength (GCSE Physics), More on Static Electricity (GCSE Physics), Investigating Current-Voltage Characteristics (GCSE Physics), Types of Nuclear Radiation (GCSE Physics), Radioactive Decay & Half Life (GCSE Physics), The Elastic Potential Energy Equation (GCSE Physics), Gravitational Potential Energy (GCSE Physics), Energy Transfers in Electronic Appliances (GCSE Physics), Comparing the Rate of Energy Transfer (GCSE Physics), Heating and Cooling Graphs (GCSE Physics), https://www.medicmind.co.uk/medic-mind-foundation/. Work And Power www.slideshare.net. Work is done whenever energy is transferred from one store to another. Copyright 2005, 2022 - OnlineMathLearning.com. Jun 14, 2019 - This video relates to the AQA (9-1) GCSE Physics specification which will be examined for the first time in 2018. Mechanical work involves using a force to move an object. Power tells us the energy transferred per second. Everyday examples of work include walking up stairs, lifting heavy objects, pulling a sledge and pushing a shopping trolley.
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