
Thermodynamics: Four Laws That Move the Universe
Where to Watch Thermodynamics: Four Laws That Move the Universe
24.
The Greatest Processes in the World
2014-03-07
Review the major concepts covered in the course. Then look ahead at innovative technologies that may help solve the world's urgent energy and fresh water needs.
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23.
The Chemical Reaction Quotient
2014-03-07
Continue your study of chemical reactions by contrasting two different types of reactions, shedding light on a crucial factor called the reaction quotient. In the first reaction, study pure compounds reacting together.
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22.
Chemical Reactions - Getting to Equilibrium
2014-03-07
Chemical reactions are fundamentally part of everything we do. Learn how the concepts of thermodynamics reveal when a reaction will occur, and when it will not.
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21.
The Electrochemical Potential
1970-01-01
Use a classic science fair project - the potato battery - to trace the source of the electron flow that makes batteries so indispensable to modern life. In the process, learn about the electrochemical potential, which describes the underlying thermodynamics of any system in which chemical reactions are occurring together with charged particles.
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20.
More Engines - Materials at Work
2014-03-07
Evaluate four other approaches to generating work from thermodynamic forces: magnetism, phase change, entropy, and surface tension. These unusual engines demonstrate the many different ways to produce mechanical energy from the unique properties of materials.
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19.
The Carnot Engine and Limits of Efficiency
2014-03-07
Study heat engines and their design limits for converting heat into work. The maximum possible efficiency in a heat engine is defined by the Carnot engine, an unattainable ideal whose properties illustrate the second law of thermodynamics.
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18.
Melting and Freezing of Mixtures
2014-03-07
Apply phase diagrams to the analysis of phase transitions of mixtures. Find that a mixture of two different components often has surprising properties.
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17.
To Mix, or Not to Mix?
2014-03-07
Explore the phenomenon of mixing - a crucial process for any situation where the product is composed of more than one material. Focus on the case of oil and water, which are notoriously unmixable, and discover what keeps them separate at the molecular level.
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16.
Properties of Phases
2014-03-07
Dig deeper into the properties of phases and phase diagrams. First, see how a flask of water can be made to boil by cooling it.
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15.
Phase Diagrams - Ultimate Materials Maps
2014-03-07
Why does ice melt above 0°C? Why does water boil above 100°C? What quantity governs the equilibrium between liquid and gaseous phases? Use phase diagrams to probe these and other questions. Also watch a stunning demonstration of the triple point, where freezing and boiling occur simultaneously!
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14.
Phases of Matter - Gas, Liquid, Solid
2014-03-07
Investigate the properties of different materials as they change phase from solid to liquid to gas. Witness the surprising behavior of supercooled water, and discover that phase diagrams are an important tool for predicting how temperature and pressure determine when phase transitions occur.
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13.
How Materials Respond to Heat
1970-01-01
Turn to the problem of thermal energy flow and volume. This phenomenon causes materials to expand when heated and contract when cooled.
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12.
How Materials Hold Heat
2014-03-07
Learn how different materials vary in their ability to absorb heat. This factor is called heat capacity, and it provides a crucial way to correlate energy flow with temperature.
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11.
Mixing and Osmotic Pressure
2014-03-07
Marvel at the power of osmosis by investigating the thermodynamic force that drives a liquid to flow from one side of a barrier to another. This force is called the chemical potential gradient, and it has wide application in performing work, from desalinating water to generating electricity.
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10.
Enthalpy, Free Energy, and Equilibrium
2014-03-07
Define the Gibbs free energy, which is closely related to entropy and allows the determination of equilibrium for systems under realistic experimental conditions. Then encounter a related variable, enthalpy, which is useful when discussing constant pressure processes.
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9.
The Chemical Potential
2014-03-07
Study molar and partial molar quantities, which are indispensable for describing what happens when materials are combined. Focus on the case of water mixed with ethanol, which adds up to a surprising volume.
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8.
Entropy - The Arrow of Time
2014-03-07
Probe the connection between entropy and the second law of thermodynamics, which states that all real processes tend to increase the entropy of the universe. Explore some important consequences of the law, including the fact that time flows in only one direction.
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7.
Work-Heat Equivalence
2014-03-07
Witness examples of energy transforming from one type to another - from mechanical to heat. First, see how the ideal gas law can be used to ignite a piece of cotton.
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6.
Energy Transferred and Conserved
2014-03-07
Discover that the values for work and heat in a given system depend on the path taken to get to a particular state. But note that the sum of work and heat does not depend on the path; it is a constant.
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5.
The Ideal Gas Law and a Piston
2014-03-07
Understand how pressure, volume, and temperature are state functions related by a formula known as the ideal gas law. Contrast these variables with work and heat, learning why they are not state functions.
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4.
Salt, Soup, Energy, and Entropy
2014-03-07
Explore other basic concepts that are critical to thermodynamics. These include the idea of a system, boundary conditions, processes that occur within systems, the meaning of the state of a system, the definition of equilibrium, and a much-misunderstood quantity called entropy.
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3.
Temperature - Thermodynamics' First Force
2014-03-07
Analyze the most central idea of thermodynamics: temperature. Investigate the origin of different temperature scales and the various methods for measuring temperature.
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2.
Bonus: Watch Trailer!
2014-03-06
Thermodynamics is the branch of science that deals with the movement of heat. Nothing seems simpler, but nothing is more subtle and wide-ranging in its effects.
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1.
1. Thermodynamics - What's under the Hood
2014-03-16
Starting with the example of cooked food, see how thermodynamics governs all processes that use energy to transform materials - whether the product is a pan of brownies or a cell phone. Preview the course by imagining what it would take to build modern technological civilization from scratch.
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Thermodynamics: Four Laws That Move the Universe is a series categorized as a cancelled. Spanning 1 seasons with a total of 24 episodes, the show debuted on 2014. The series has earned a no reviews from both critics and viewers. The IMDb score stands at 0.0.
How to Watch Thermodynamics: Four Laws That Move the Universe
How can I watch Thermodynamics: Four Laws That Move the Universe online? Thermodynamics: Four Laws That Move the Universe is available on with seasons and full episodes. You can also watch Thermodynamics: Four Laws That Move the Universe on demand at Amazon Prime, Apple TV Channels, Amazon online.
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Jeffrey Grossman
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