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A 10 N force is applied on a body which ...

A 10 N force is applied on a body which produces in it an acceleration of 1 `m//s^(2)`. The mass of other body is

A

10 kg

B

5 kg

C

15 kg

D

20 kg

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The correct Answer is:
To find the mass of the body when a force is applied, we can use Newton's second law of motion, which states that: \[ F = m \cdot a \] Where: - \( F \) is the force applied (in Newtons), - \( m \) is the mass of the body (in kilograms), - \( a \) is the acceleration produced (in meters per second squared). Given: - \( F = 10 \, \text{N} \) (the force applied), - \( a = 1 \, \text{m/s}^2 \) (the acceleration produced). We need to find the mass \( m \). ### Step 1: Rearrange the formula to solve for mass From the equation \( F = m \cdot a \), we can rearrange it to find mass: \[ m = \frac{F}{a} \] ### Step 2: Substitute the known values into the equation Now, substitute the values of \( F \) and \( a \) into the equation: \[ m = \frac{10 \, \text{N}}{1 \, \text{m/s}^2} \] ### Step 3: Perform the calculation Now, perform the calculation: \[ m = 10 \, \text{kg} \] ### Conclusion The mass of the body is \( 10 \, \text{kg} \). ---

To find the mass of the body when a force is applied, we can use Newton's second law of motion, which states that: \[ F = m \cdot a \] Where: - \( F \) is the force applied (in Newtons), - \( m \) is the mass of the body (in kilograms), - \( a \) is the acceleration produced (in meters per second squared). ...
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