Challenger App

No.1 PSC Learning App

★
★
★
★
★
1M+ Downloads
A body is dropped from a height of 20 metres with zero initial momentum; calculate its mass if it hits the ground with momentum 40 kg. m/s. (Assume the acceleration due to gravity 'g' = 10 m/s²)

A2 kg

B4 kg

C20 kg

D1 kg

Answer:

A. 2 kg

Read Explanation:

* Initial height (h) = 20 m * Initial velocity (u) = 0 m/s (dropped with zero initial momentum) * Final momentum (p) = 40 kg·m/s * Acceleration due to gravity (g) = 10 m/s² * Mass (m) = ? Step 1: Find the final velocity when the body hits the ground Using the equation of motion: v² = u² + 2gh Where: * v = final velocity * u = initial velocity = 0 m/s * g = 10 m/s² * h = 20 m v² = 0² + 2 × 10 × 20 v² = 400 v = 20 m/s Step 2: Calculate the mass using momentum We know that momentum (p) = mass (m) × velocity (v) Given: p = 40 kg·m/s and v = 20 m/s Therefore: 40 = m × 20 m = 40/20 m = 2 kg Answer: The mass of the body is 2 kg (Option A)


Related Questions:

1 ന്യൂട്ടൺ (N) = _____ Dyne.
The Young's modulus for perfectly rigid body is
ചലിക്കുന്ന വസ്തുവിൻറ്റെ ചലനത്തെ തടസ്സപ്പെടുത്തുന്ന ബലം

There are two identical spherical solid balls of iron alloy touching each other. What would be the gravitational force of attraction between them if the density of the materials of the ball is

        (3/2π)x10^5(kg/m^3)
      

and radius 1 m.

        G=6.67×10−11Nm2/kg2
      

ദ്രാവകങ്ങൾ ഗോളാകൃതി പ്രാപിക്കുന്നതിനിടയാക്കുന്ന പ്രതിഭാസം