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In a spring L0 represents :
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
The formula of a weight is W = :
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
( R ) (W) vectors of body rests on a table are of
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
The law T = K x is called :
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
The elongation of spring is proportional to its elongation this statetement of
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
: If K = 1N/cm then its value is:
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
Given the elongation of spring is 10cm and K =1N/cm then the weight of load is
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
∆L = x represents :
4- 100N/m
2- mg
3- Initial length
Hook's law
2- 10N
4- opposite directions
1- Hook’s law
2- Elongation
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