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Question 14(1 point) Which of the following gas laws would be considered as having an "inverse"relationship. a Boyles Law b Charles Law Gay-Lussac's Law Od None: All of them are direct relationships

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Question 14(1 point)
Which of the following gas laws would be considered as having an "inverse"relationship.
a Boyles Law
b Charles Law
Gay-Lussac's Law
Od None: All of them are direct relationships

Question 14(1 point) Which of the following gas laws would be considered as having an "inverse"relationship. a Boyles Law b Charles Law Gay-Lussac's Law Od None: All of them are direct relationships

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BernadetteVeteran · Tutor for 11 years

Answer

a) Boyle's Law

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To determine whether a gas law represents an "inverse" relationship, we need to understand the nature of each law:- Boyle's Law states that for a given mass of an ideal gas at constant temperature, the volume of the gas is inversely proportional to its pressure. This means that if the pressure increases, the volume decreases, and vice versa, as long as the temperature remains constant. The mathematical expression for Boyle's Law is \(PV = k\), where \(P\) is pressure, \(V\) is volume, and \(k\) is a constant.- Charles's Law states that the volume of an ideal gas is directly proportional to its absolute temperature when the pressure is held constant. If the temperature increases, the volume increases as well, provided the pressure is constant. The mathematical expression for Charles's Law is \(V/T = k\), where \(V\) is volume, \(T\) is temperature, and \(k\) is a constant.- Gay-Lussac's Law states that the pressure of a given mass of gas varies directly with the absolute temperature when the volume is kept constant. This means that if the temperature increases, the pressure increases as well, as long as the volume is constant. The mathematical expression for Gay-Lussac's Law is \(P/T = k\), where \(P\) is pressure, \(T\) is temperature, and \(k\) is a constant.Based on these descriptions, Boyle's Law is the one that describes an inverse relationship between pressure and volume.
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