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Chapter 5

기체

압력과 압력의 측정
압력과 압력의 측정
Gas pressure is caused by force exerted by gas molecules colliding with the surfaces of objects. Although the force of each collision is very small, any ...
기체 법칙
기체 법칙
Through experiments, scientists established the mathematical relationships between pairs of variables, such as pressure and temperature, pressure and ...
이상기체 법칙의 응용: 몰질량, 밀도, 부피
이상기체 법칙의 응용: 몰질량, 밀도, 부피
The volume occupied by one mole of a substance is its molar volume. The ideal gas law, PV = nRT,  suggests that the volume of a given quantity of gas ...
혼합기체 - 돌턴의 분압 법칙
혼합기체 - 돌턴의 분압 법칙
Unless individual gases chemically react with each other, the individual gases in a mixture of gases do not affect each other’s pressure. Each gas ...
화학양론과 기체
화학양론과 기체
Chemical stoichiometry describes the quantitative relationships between reactants and products in chemical reactions. In addition to measuring quantities ...
기체 분자 운동론: 기본 가정
기체 분자 운동론: 기본 가정
The ideal-gas equation, which is empirical, describes the behavior of gases by establishing relationships between their macroscopic properties. For ...
기체 분자 운동론과 기체 법칙
기체 분자 운동론과 기체 법칙
The test of the kinetic molecular theory (KMT) and its postulates is its ability to explain and describe the behavior of a gas. The various gas laws ...
분자 속도와 운동에너지
분자 속도와 운동에너지
The kinetic molecular theory qualitatively explains the behaviors described by the various gas laws. The postulates of this theory may be applied in a ...
분출과 확산
분출과 확산
Although gaseous molecules travel at tremendous speeds (hundreds of meters per second), they collide with other gaseous molecules and travel in many ...
실제기체 - 이상기체 법칙에서 도출
실제기체 - 이상기체 법칙에서 도출
Thus far, the ideal gas law, PV = nRT, has been applied to a variety of different types of problems, ranging from reaction stoichiometry and empirical and ...
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