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AS Level Deformation of Solids

2026

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1 h 9 m

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author avatar

Tumelo Mphai👑

03/07/2026 15:39
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM 6 Deformation of solids 6.1 Stress and strain Candidates should be able to: 1 understand that deformation is caused by tensile or compressive forces (forces and deformations will be assumed to be in one dimension only) 2 understand and use the terms load, extension, compression and limit of proportionality 3 recall and use Hooke’s law 4 recall and use the formula for the spring constant k = F/ x 5 define and use the terms stress, strain and the Young modulus 6 describe an experiment to determine the Young modulus of a metal in the form of a wire 6.2 Elastic and plastic behaviour Candidates should be able to: 1 understand and use the terms elastic deformation, plastic deformation and elastic limit 2 understand that the area under the force–extension graph represents the work done 3 determine the elastic potential energy of a material deformed within its limit of propo
author avatar

Faisal فيصل السيف

03/07/2026 15:39
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM 6 Deformation of solids 6.1 Stress and strain Candidates should be able to: 1 understand that deformation is caused by tensile or compressive forces (forces and deformations will be assumed to be in one dimension only) 2 understand and use the terms load, extension, compression and limit of proportionality 3 recall and use Hooke’s law 4 recall and use the formula for the spring constant k = F/ x 5 define and use the terms stress, strain and the Young modulus 6 describe an experiment to determine the Young modulus of a metal in the form of a wire 6.2 Elastic and plastic behaviour Candidates should be able to: 1 understand and use the terms elastic deformation, plastic deformation and elastic limit 2 understand that the area under the force–extension graph represents the work done 3 determine the elastic potential energy of a material deformed within its limit of propo
author avatar

lakshmimanchu

03/07/2026 15:39
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM 6 Deformation of solids 6.1 Stress and strain Candidates should be able to: 1 understand that deformation is caused by tensile or compressive forces (forces and deformations will be assumed to be in one dimension only) 2 understand and use the terms load, extension, compression and limit of proportionality 3 recall and use Hooke’s law 4 recall and use the formula for the spring constant k = F/ x 5 define and use the terms stress, strain and the Young modulus 6 describe an experiment to determine the Young modulus of a metal in the form of a wire 6.2 Elastic and plastic behaviour Candidates should be able to: 1 understand and use the terms elastic deformation, plastic deformation and elastic limit 2 understand that the area under the force–extension graph represents the work done 3 determine the elastic potential energy of a material deformed within its limit of propo
author avatar

كريم هليل

03/07/2026 15:39
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM 6 Deformation of solids 6.1 Stress and strain Candidates should be able to: 1 understand that deformation is caused by tensile or compressive forces (forces and deformations will be assumed to be in one dimension only) 2 understand and use the terms load, extension, compression and limit of proportionality 3 recall and use Hooke’s law 4 recall and use the formula for the spring constant k = F/ x 5 define and use the terms stress, strain and the Young modulus 6 describe an experiment to determine the Young modulus of a metal in the form of a wire 6.2 Elastic and plastic behaviour Candidates should be able to: 1 understand and use the terms elastic deformation, plastic deformation and elastic limit 2 understand that the area under the force–extension graph represents the work done 3 determine the elastic potential energy of a material deformed within its limit of propo
author avatar

Hajer _💜

03/07/2026 15:39
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM 6 Deformation of solids 6.1 Stress and strain Candidates should be able to: 1 understand that deformation is caused by tensile or compressive forces (forces and deformations will be assumed to be in one dimension only) 2 understand and use the terms load, extension, compression and limit of proportionality 3 recall and use Hooke’s law 4 recall and use the formula for the spring constant k = F/ x 5 define and use the terms stress, strain and the Young modulus 6 describe an experiment to determine the Young modulus of a metal in the form of a wire 6.2 Elastic and plastic behaviour Candidates should be able to: 1 understand and use the terms elastic deformation, plastic deformation and elastic limit 2 understand that the area under the force–extension graph represents the work done 3 determine the elastic potential energy of a material deformed within its limit of propo
author avatar

Suren

03/07/2026 15:39
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FiTDXvqn9Dro7UmuRhn4fVtonBgy6TM 6 Deformation of solids 6.1 Stress and strain Candidates should be able to: 1 understand that deformation is caused by tensile or compressive forces (forces and deformations will be assumed to be in one dimension only) 2 understand and use the terms load, extension, compression and limit of proportionality 3 recall and use Hooke’s law 4 recall and use the formula for the spring constant k = F/ x 5 define and use the terms stress, strain and the Young modulus 6 describe an experiment to determine the Young modulus of a metal in the form of a wire 6.2 Elastic and plastic behaviour Candidates should be able to: 1 understand and use the terms elastic deformation, plastic deformation and elastic limit 2 understand that the area under the force–extension graph represents the work done 3 determine the elastic potential energy of a material deformed within its limit of propo
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