Hooke’s law is mathematically expressed as : Fx(x) = - k x A mass attached on the end of a spring obeys Hooke’s lawand executes oscillations of the type that we call simple harmonic motion. 2. 2.3. By analysing Hooke’s expression, what can you sayabout the force 2.3.1 when: x = 0 2.3.2 When : x 0 2.3.3 When : x 0
Hooke’s law is mathematically expressed as : Fx(x) = - k x A mass attached on the end of a spring obeys Hooke’s lawand executes oscillations of the type that we call simple harmonic motion. 2. 2.3. By analysing Hooke’s expression, what can you sayabout the force 2.3.1 when: x = 0 2.3.2 When : x 0 2.3.3 When : x 0
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Hooke’s law is mathematically expressed as :
Fx(x) = - k x
A mass attached on the end of a spring obeys Hooke’s lawand executes oscillations of the type that we call
2.
2.3. By analysing Hooke’s expression, what can you sayabout the force
2.3.1 when: x = 0
2.3.2 When : x 0
2.3.3 When : x 0
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