a graph of gas pressure versus the number of particles in a container is a straight line. which other…

a graph of gas pressure versus the number of particles in a container is a straight line. which other relationship will have a similar graph?\nvolume versus pressure, because they are also directly proportional\nvolume versus temperature, because they are also directly proportional\nvolume versus pressure, because they are also inversely proportional\nvolume versus temperature, because they are also inversely proportional

a graph of gas pressure versus the number of particles in a container is a straight line. which other relationship will have a similar graph?\nvolume versus pressure, because they are also directly proportional\nvolume versus temperature, because they are also directly proportional\nvolume versus pressure, because they are also inversely proportional\nvolume versus temperature, because they are also inversely proportional

Answer

Answer:

B. volume versus temperature, because they are also directly proportional

Explanation:

Step1: Recall gas - law relationships

According to the ideal gas law $PV = nRT$. When pressure $P$ and number of moles $n$ are constant, $V\propto T$ (Charles's law), a direct - proportion relationship. When number of particles (related to $n$) and temperature $T$ are constant, $P\propto\frac{1}{V}$ (Boyle's law), an inverse - proportion relationship. A graph of gas pressure versus the number of particles in a container is a straight line when other variables are constant, indicating a direct proportion. Volume and temperature also have a direct - proportion relationship (Charles's law), which will result in a straight - line graph.