a model rocket accelerates at 15.3 m/s² with a force of 44 n. calculate the mass of the rocket. round your…

a model rocket accelerates at 15.3 m/s² with a force of 44 n. calculate the mass of the rocket. round your answer to the nearest tenth of a kg. the mass of the rocket is kg.

a model rocket accelerates at 15.3 m/s² with a force of 44 n. calculate the mass of the rocket. round your answer to the nearest tenth of a kg. the mass of the rocket is kg.

Answer

Explanation:

Step1: Recall Newton's second - law formula

$F = ma$, where $F$ is force, $m$ is mass and $a$ is acceleration. We need to solve for $m$, so we can rewrite the formula as $m=\frac{F}{a}$.

Step2: Substitute given values

Given $F = 44\ N$ and $a=15.3\ m/s^{2}$, then $m=\frac{44}{15.3}$.

Step3: Calculate the mass

$m=\frac{44}{15.3}\approx2.9\ kg$

Answer:

$2.9$