An explanation corresponding to Charles’s law being against the Newton’s model and with the kinetic theory of gases is to be stated. Concept introduction : Jacques Charles was a French physicist who gave the relationship between temperature and volume. This relationship is known as Charles’s Law. It states that the volume of a given mass of a gas is directly proportional to the absolute temperature when the pressure of the gas is kept constant. To determine: An explanation corresponding to Charles’s law being against the Newton’s model and with the kinetic theory of gases. Solution: The Charles’s law is against the Newton’s model because of strong repulsive force between the gas molecules.
An explanation corresponding to Charles’s law being against the Newton’s model and with the kinetic theory of gases is to be stated. Concept introduction : Jacques Charles was a French physicist who gave the relationship between temperature and volume. This relationship is known as Charles’s Law. It states that the volume of a given mass of a gas is directly proportional to the absolute temperature when the pressure of the gas is kept constant. To determine: An explanation corresponding to Charles’s law being against the Newton’s model and with the kinetic theory of gases. Solution: The Charles’s law is against the Newton’s model because of strong repulsive force between the gas molecules.
An explanation corresponding to Charles’s law being against the Newton’s model and with the kinetic theory of gases is to be stated.
Concept introduction: Jacques Charles was a French physicist who gave the relationship between temperature and volume. This relationship is known as Charles’s Law. It states that the volume of a given mass of a gas is directly proportional to the absolute temperature when the pressure of the gas is kept constant.
To determine: An explanation corresponding to Charles’s law being against the Newton’s model and with the kinetic theory of gases.
Solution: The Charles’s law is against the Newton’s model because of strong repulsive force between the gas molecules.
Chloroform, long used as an anesthetic and now considered carcinogenic, has a heat of vaporization of 31.4 kJ/mol. During vaporization, its entropy increases by 94.2 J/mol.K. Therefore, select the alternative that indicates the temperature, in degrees Celsius, at which chloroform begins to boil under a pressure of 1 atm.
A) 28
B) 40
C) 52
D) 60
E) 72
If we assume a system with an anodic overpotential, the variation of n as a function
of current density:
1. at low fields is linear 2. at higher fields, it follows Tafel's law
Obtain the range of current densities for which the overpotential has the same value
when calculated for 1 and 2 cases (maximum relative difference of 5% compared to
the behavior for higher fields).
To which overpotential range does this correspond?
Data: i = 1.5 mA cm², T = 300°C, B = 0.64, R = 8.314 J K1 mol-1 and F = 96485 C mol-1.
Answer by equation please
Chapter 10 Solutions
Chemistry the Central Science 13th Edition Custom for Lamar University
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