로그인

Phase transitions play an important theoretical and practical role in the study of heat flow. In melting or fusion, a solid turns into a liquid; the opposite process is freezing. In evaporation, a liquid turns into a gas; the opposite process is condensation.

A substance melts or freezes at a temperature called its melting point and boils or condenses at its boiling point. These temperatures depend on pressure. High pressure favors the denser form of the substance, so typically, high pressure raises the melting point and boiling point, and low pressure lowers them.

For example, the boiling point of water is 100 °C at 1.00 atm. At higher pressures, the boiling point is higher, and at lower pressures, it is lower. The main exception is the melting and freezing of water.

The energy involved in a phase change depends on the number of bonds or force pairs and their strength. The number of bonds is proportional to the number of molecules and, thus, to the mass of the sample. The energy per unit mass required to change a substance from the solid phase to the liquid phase, or released when the substance changes from liquid to solid, is known as the heat of fusion. The energy per unit mass required to change a substance from the liquid phase to the vapor phase is known as the heat of vaporization. Further, the latent heat of fusion and the latent heat of vaporization are material constants that can be determined experimentally. These constants are "latent,"or hidden, because, in phase changes, energy enters or leaves a system without causing a temperature change in the system; so, in effect, the energy is hidden.

Tags
Phase TransitionsMeltingFreezingEvaporationCondensationMelting PointBoiling PointPressure EffectsHeat Of FusionHeat Of VaporizationLatent HeatEnergy ChangesThermodynamics

장에서 18:

article

Now Playing

18.9 : Phase Changes

Temperature and Heat

3.8K Views

article

18.1 : 온도와 열평형

Temperature and Heat

6.0K Views

article

18.2 : 열역학 제0법칙

Temperature and Heat

4.2K Views

article

18.3 : 온도계 및 온도 저울

Temperature and Heat

4.6K Views

article

18.4 : 가스 온도계와 켈빈 스케일

Temperature and Heat

4.0K Views

article

18.5 : 열팽창

Temperature and Heat

3.9K Views

article

18.6 : 열 응력

Temperature and Heat

2.3K Views

article

18.7 : 열팽창 및 열 응력: 문제 해결

Temperature and Heat

1.0K Views

article

18.8 : 열 흐름 및 비열

Temperature and Heat

4.9K Views

article

18.10 : 열 량 계

Temperature and Heat

2.6K Views

article

18.11 : 열전달의 메커니즘 I

Temperature and Heat

3.8K Views

article

18.12 : 열전달의 메커니즘 II

Temperature and Heat

3.0K Views

article

18.13 : 전도, 대류 및 복사: 문제 해결

Temperature and Heat

1.0K Views

article

18.14 : 방사선 : 응용 프로그램

Temperature and Heat

1.1K Views

article

18.15 : 방사선 흡수

Temperature and Heat

642 Views

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유