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the kinetic energy (k, in joules) of an object can be found with the eq…

Question

the kinetic energy (k, in joules) of an object can be found with the equation v = √(2k/m), where v is the velocity (m/sec) and m is the mass (in kg) of an object. determine the kinetic energy of an object with a mass of 2500 kg that has a velocity of 40 m/s. a. 1,500,000 joules b. 2,000,000 joules c. 2,500,000 joules d. 3,000,000 joules

Explanation:

Step1: Rearrange the kinetic - energy formula

The formula for kinetic energy is $K=\frac{1}{2}MV^{2}$. Given $V = \sqrt{\frac{2K}{M}}$, we can square both sides to get $V^{2}=\frac{2K}{M}$, and then $K=\frac{1}{2}MV^{2}$.

Step2: Substitute the given values

We are given that $M = 2500$ kg and $V = 40$ m/s. Substitute these values into the formula $K=\frac{1}{2}MV^{2}$.
$K=\frac{1}{2}\times2500\times40^{2}$.
First, calculate $40^{2}=1600$.
Then, $\frac{1}{2}\times2500\times1600 = 1250\times1600$.
$1250\times1600=2000000$ joules.

Answer:

C. 2,000,000 joules