Question
Question: A cricket ball and a tennis ball are simultaneously thrown upwards from the ground with equal initia...
A cricket ball and a tennis ball are simultaneously thrown upwards from the ground with equal initial speeds. Ignoring the air resistance, which of the following statements is correct?
A. Both the balls travel the same distance at the same time.
B. Tennis ball rises the highest.
C. Tennis ball is in flight the longest.
D. Tennis ball has a smaller impact speed.
Solution
We will make use of the formula of the law of motion to find the distance covered by the balls. The weight of the balls doesn’t play any role in the absence of air resistance. Thus, by considering the gravitational acceleration and the same initial velocity, we will prove that the distance covered by both the balls are the same.
Formula used: v2−u2=2as
Complete step by step answer:
The answer to this question completely depends on the initial speed of the objects and their weight.
As, we are given the same initial speed of a cricket ball and a tennis ball, so, we can derive the equations as follows.
The final velocity of both the balls will be zero, as they will hit the ground at the end of their motion.
The law of motion equation is given as follows.
v2−u2=2as
Where v is the final velocity, u is the initial velocity, a is the acceleration and s is the distance covered.
Consider the notation 1 for the cricket ball and the notation 2 for the tennis ball. As these balls are falling, thus instead of the normal acceleration, the acceleration due to gravity acts on these.
So, we have,
For cricket ball, v21−u21=2g1s1
For tennis ball, v22−u22=2g2s2
Further compute the equations
For cricket ball,