Skip to main content
Ch. 17 - Temperature, Thermal Expansion, and the Ideal Gas Law
Giancoli Douglas - Physics for Scientists and Engineers 5th edition
Giancoli Douglas5th editionPhysics for Scientists and EngineersISBN: 9780137488179Non è quello che usi tu?Cambia libro di testo
Capitolo 17, Problema 76a

Assume that in an alternate universe, the laws of physics are very different from ours and that “ideal” gases behave as follows: At constant temperature, pressure is inversely proportional to the square of the volume.

Guida verificata passo dopo passo
1
Identify the relationship given in the problem: At constant temperature, pressure (P) is inversely proportional to the square of the volume (V). This can be expressed mathematically as \( P \propto \frac{1}{V^2} \), or equivalently \( P = k \cdot \frac{1}{V^2} \), where \( k \) is a proportionality constant.
Rearrange the equation to express the proportionality constant \( k \): \( k = P \cdot V^2 \). This shows that the product of \( P \) and \( V^2 \) remains constant for a given temperature.
To analyze a process involving this gas, such as a change in volume or pressure, use the relationship \( P_1 \cdot V_1^2 = P_2 \cdot V_2^2 \), where \( P_1 \) and \( V_1 \) are the initial pressure and volume, and \( P_2 \) and \( V_2 \) are the final pressure and volume.
If additional information is provided, such as specific values for \( P_1 \), \( V_1 \), and either \( P_2 \) or \( V_2 \), substitute these values into the equation \( P_1 \cdot V_1^2 = P_2 \cdot V_2^2 \) to solve for the unknown variable.
Finally, ensure that the units of pressure and volume are consistent throughout the calculation, and interpret the result in the context of the alternate universe's gas behavior.

Risposta video verificata per un problema simile:

Questa soluzione video è stata consigliata dai nostri tutor come utile per risolvere questo problema.
Durata del video:
3m

Concetti chiave

Ecco i concetti essenziali che devi comprendere per rispondere correttamente alla domanda.

Ideal Gas Law

The Ideal Gas Law describes the behavior of ideal gases through the equation PV = nRT, where P is pressure, V is volume, n is the number of moles, R is the gas constant, and T is temperature. In typical scenarios, it assumes that pressure is inversely proportional to volume at constant temperature, but this question introduces a unique variation.
Video consigliato:
Percorso guidato
07:21
Ideal Gases and the Ideal Gas Law

Inverse Proportionality

Inverse proportionality refers to a relationship where one variable increases as the other decreases. In this context, the pressure of the gas is inversely proportional to the square of the volume, meaning that if the volume increases, the pressure decreases at a rate proportional to the square of that volume, which is a deviation from the standard ideal gas behavior.
Video consigliato:
Percorso guidato
05:26
The Inverse-Square Law for Intensity

Alternate Universe Physics

The concept of alternate universe physics explores hypothetical scenarios where the fundamental laws of physics differ from our own. This question posits a universe where the behavior of gases diverges from the established principles, prompting a reevaluation of how we understand gas behavior under different conditions, particularly in terms of pressure and volume relationships.
Video consigliato:
Percorso guidato
07:49
Alternating Voltages and Currents