A gas law stating that pressure and volume are inversely related when temperature is constant., PRESSURE (P), KINETIC MOLECULAR THEORY, COLLISION, BOYLE'S LAW, The force exerted by gas particles as they collide with the walls of a container., KINETIC MOLECULAR THEORY, COMPRESSION, PRESSURE (P), GAS PARTICLES, Temperature remains unchanged so particle speed stays the same., COMPRESSION, CONSTANT TEMPERATURE, COLLISION, GAS PARTICLES, Tiny particles that move randomly and freely., GAS PARTICLES, INVERSELY PROPORTIONAL, CONSTANT TEMPERATURE, VOLUME (V), When gas particles hit each other or the container walls., COLLISION, CONSTANT TEMPERATURE, EXPANSION, GAS PARTICLES, A theory explaining gas behavior based on particle motion and collisions., COMPRESSION, BOYLE'S LAW, KINETIC MOLECULAR THEORY, PRESSURE (P), A relationship where one quantity increases while the other decreases., INVERSELY PROPORTIONAL, KINETIC MOLECULAR THEORY, CONSTANT TEMPERATURE, PRESSURE (P), Decreasing the volume of a gas by pushing particles closer together., PRESSURE (P), COMPRESSION, CONSTANT TEMPERATURE, BOYLE'S LAW, Increasing the volume of a gas, allowing particles to move farther apart., VOLUME (V), EXPANSION, PRESSURE (P), CONSTANT TEMPERATURE, The amount of space occupied by a gas., KINETIC MOLECULAR THEORY, VOLUME (V), EXPANSION, GAS PARTICLES
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SPIN AND PREDICT
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