/*! This file is auto-generated */ .wp-block-button__link{color:#fff;background-color:#32373c;border-radius:9999px;box-shadow:none;text-decoration:none;padding:calc(.667em + 2px) calc(1.333em + 2px);font-size:1.125em}.wp-block-file__button{background:#32373c;color:#fff;text-decoration:none} Problem 30 How does pressure affect changes... [FREE SOLUTION] | 91Ó°ÊÓ

91Ó°ÊÓ

How does pressure affect changes between the liquid and vapor states?

Short Answer

Expert verified
Pressure strongly influences the phase transitions between the liquid and vapor states. Increasing pressure can induce a phase change from gas to liquid, raise the boiling point of a liquid, and make condensation occur more readily. Conversely, reducing the pressure can make liquids vaporize at lower temperatures.

Step by step solution

01

Understanding Phase Transitions

Phase transitions refer to the transformation of matter from one state (solid, liquid, gas) to another. When it comes to liquid and vapor states, this change usually happens due to either changes in temperature or pressure.
02

Effect of Pressure on Phase Transitions

Pressure strongly affects phase transitions. Increasing the pressure on a substance forces the molecules closer together, which can induce a phase change. For example, increasing the pressure can change a gas (like steam) into a liquid (like water).
03

Boiling Point and Pressure

The boiling point of a liquid (the temperature at which it turns into a gas) also depends on the pressure. The higher the pressure, the higher the boiling point. This is because as we increase the pressure, we make it harder for molecules to escape the liquid phase and enter the gas phase.
04

Condensation and Pressure

Conversely, if the pressure is reduced, liquids can turn into gases at lower temperatures. For example, water boils at a lower temperature at high altitudes (where the pressure is lower) than it does at sea level.

Unlock Step-by-Step Solutions & Ace Your Exams!

  • Full Textbook Solutions

    Get detailed explanations and key concepts

  • Unlimited Al creation

    Al flashcards, explanations, exams and more...

  • Ads-free access

    To over 500 millions flashcards

  • Money-back guarantee

    We refund you if you fail your exam.

Over 30 million students worldwide already upgrade their learning with 91Ó°ÊÓ!

Key Concepts

These are the key concepts you need to understand to accurately answer the question.

Pressure Effect on Boiling Point
Understanding how pressure impacts the boiling point of liquids is crucial for a range of applications, from culinary arts to industrial processes. When the pressure above a liquid increases, its boiling point rises as well. This happens because higher pressure forces the liquid molecules to remain closer together, making it more challenging for them to gain enough energy to escape into the vapor phase.

Consider a pressure cooker as a kitchen example of this effect. A pressure cooker increases the pressure over the liquid inside it, thus raising the water's boiling point and allowing food to cook at higher temperatures, speeding up the cooking process. On the other hand, at high altitudes, the atmospheric pressure is much lower; thus water boils at temperatures below 100°C (212°F), resulting in longer cooking times for certain foods.
Liquid to Vapor State Changes
The transition from liquid to vapor is a captivating phase change known as evaporation or boiling, depending on the circumstances. The process starts at a microscopic level where individual molecules within the liquid gain enough energy to overcome intermolecular forces and break free into the vapor phase.

Evaporation is a surface phenomenon and can occur at any temperature, whereas boiling is systemic and occurs when the liquid's vapor pressure equals the surrounding pressure. During evaporation, energy transfer is primarily through heat, but the presence of wind and humidity can also play a significant role in how rapidly evaporation occurs.
Phase Transitions and Pressure
The laws of physics that govern phase transitions reveal the intricate dance between pressure and the states of matter. When a substance is in its liquid state, its molecules are closely packed but still have enough energy to move around each other. Adding pressure to the system can sometimes lead to liquefaction of gases, like in the case of carbon dioxide becoming liquid CO2 under high pressure, commonly used in fire extinguishers.

Conversely, decreasing the pressure can promote phase transition from liquid to gas. This principle is used in many engineering systems, like refrigeration, where a refrigerant goes through cycles of compression and expansion (thus changing pressure) to absorb and release heat, providing cooling effects.

One App. One Place for Learning.

All the tools & learning materials you need for study success - in one app.

Get started for free

Most popular questions from this chapter

What is the difference between the terms state and phase?

Why does ice float in water even though most solids sink in the pure liquid?

Give an example of deposition.

Calculating Vapor Pressure by Using a Table The graphing calculator can run a program that calculates a table for the vapor pressure in atmospheres at different temperatures (K) given the number of moles of a gas and the volume of the gas (V). Given a 0.50 mol gas sample with a volume of \(10 \mathrm{L},\) you can calculate the pressure at 290 \(\mathrm{K}\) by using a table. Use this program to make the table. Next, use the table to perform the calculations. Go to Appendix C. If you are using a TI- -83 Plus, you can download the program VAPOR and data and run the application as directed. If you are using another calculator, your teacher will provide you with key- strokes and data sets to use. After you have run the program, answer the questions. a. What is the pressure for 1.3 mol of a gas with a volume of 8.0 \(\mathrm{L}\) and a temperature of 320 \(\mathrm{K} ?\) b. What is the pressure for 1.5 mol of a gas with a volume of 10.0 \(\mathrm{L}\) and a temperature of 340 \(\mathrm{K} ?\) Two gases are measured at 300 \(\mathrm{K}\) . One has an amount of 1.3 \(\mathrm{mol}\) and a volume of \(7.5 \mathrm{L},\) and the other has an amount of 0.5 \(\mathrm{mol}\) and a volume of 10.0 \(\mathrm{L} .\) Which gas has the lesser pressure?

The molar enthalpy of fusion of water is 6.009 \(\mathrm{kJ} / \mathrm{mol}\) at \(0^{\circ} \mathrm{C}\) . Explain what this statement means.

See all solutions

Recommended explanations on Chemistry Textbooks

View all explanations

What do you think about this solution?

We value your feedback to improve our textbook solutions.

Study anywhere. Anytime. Across all devices.