Pregunta
upstudy study bank question image url

Which rule is described by the kinetic molecular theory? gas particles attract one another and bond together gas particles collide and there is an energy transfer between molecules gas particles cannot be compressed the speed of gas particles is directly proportional to the temperature

Ask by Mckenzie Barnett. in the United States
Feb 24,2025

Solución de inteligencia artificial de Upstudy

Respuesta verificada por el tutor

Responder

The kinetic molecular theory describes that gas particles collide and transfer energy between each other.

Solución

The kinetic molecular theory describes gases as consisting of tiny particles in constant, straight-line motion that frequently collide with one another and with the walls of their container in elastic collisions (meaning there is an energy transfer between molecules). Therefore, the rule that best aligns with the kinetic molecular theory is: "gas particles collide and there is an energy transfer between molecules" Here’s why the other choices are not consistent with the kinetic molecular theory: • "gas particles attract one another and bond together" – The kinetic molecular theory treats gas particles as having negligible intermolecular forces (except during collisions), and gases generally do not form bonds. • "gas particles cannot be compressed" – Gases are compressible because there is a significant amount of empty space between particles; the particles themselves are very small relative to the distances between them. • "the speed of gas particles is directly proportional to the temperature" – While the average kinetic energy of gas particles is directly proportional to the temperature, the relationship between the speed and temperature is given by v ∝ √T rather than being directly proportional. Thus, the correct statement is the one about collisions and energy transfer.

Respondido por UpStudy AI y revisado por un tutor profesional

error msg
Explicar
Simplifique esta solución

Beyond the Answer

The kinetic molecular theory suggests that the speed of gas particles is directly proportional to the temperature. This means that as the temperature increases, the particles move faster, leading to more energetic collisions. This principle explains why heating a gas often increases its pressure if the volume remains constant! In real-world applications, this theory plays a crucial role in understanding phenomena like how hot air balloons rise. As the air inside the balloon is heated, the air particles gain kinetic energy, causing them to move apart and decrease in density, which leads to buoyancy and allows the balloon to ascend into the sky!

preguntas relacionadas

Latest Physics Questions

¡Prueba Premium ahora!
¡Prueba Premium y hazle a Thoth AI preguntas de matemáticas ilimitadas ahora!
Quizas mas tarde Hazte Premium
Estudiar puede ser una verdadera lucha
¿Por qué no estudiarlo en UpStudy?
Seleccione su plan a continuación
Prima

Puedes disfrutar

Empieza ahora
  • Explicaciones paso a paso
  • Tutores expertos en vivo 24/7
  • Número ilimitado de preguntas
  • Sin interrupciones
  • Acceso completo a Respuesta y Solución
  • Acceso completo al chat de PDF, al chat de UpStudy y al chat de navegación
Básico

Totalmente gratis pero limitado

  • Solución limitada
Bienvenido a ¡Estudia ahora!
Inicie sesión para continuar con el recorrido de Thoth AI Chat
Continuar con correo electrónico
O continuar con
Al hacer clic en "Iniciar sesión", acepta nuestros términos y condiciones. Términos de Uso & Política de privacidad