WebThe kinetic molecular theory is a simple but very effective model that effectively explains ideal gas behavior. The theory assumes that gases consist of widely separated molecules … WebThe kinetic molecular theory is a simple but very effective model that effectively explains ideal gas behavior. The theory assumes that gases consist of widely separated molecules …
Kinetic Molecular Theory: The Kinetic Molecular Theory
WebSolids and liquids cannot be compressed as. 19. Use the kinetic-molecular theory to explain each observation given. a. Wax melts near the flame of a burning candle. b. Liquid water may be converted into ice cubes in a freezer. c. Ginger ale flows to match the shape of a glass. WebThe kinetic molecular theory is a simple but very effective model that effectively explains ideal gas behavior. The theory assumes that gases consist of widely separated molecules of negligible volume that are in constant motion, colliding elastically with one another and the walls of their container with average speeds determined by their absolute temperatures. solar light 25w
How does the kinetic-molecular theory explain the pressure exerted by
WebExplain your answer based on the kinetic molecular theory. In both cases, assume the balloon is tied This problem has been solved! You'll get a detailed solution from a subject matter expert that helps you learn core concepts. See Answer Question: Part 1. A lightly inflated balloon is placed in a freezer. WebFeb 21, 2015 · The kinetic theory of gases is a topic that can explain many everyday observations. The kinetic theory of gases (also known as kinetic-molecular theory) is a law that explains the behavior of a hypothetical ideal gas. According to this theory, gases are made up of tiny particles in random, straight line motion. WebAccording to kinetic theory, the motion of particles increases as the temperature is increased. Due to this pressure also increases by increased collision of particles. If the container size is increased, the collision rate will be … slurp society mobile al