Thermodynamically example sentences

Related (2): entropy, enthalpy

"Thermodynamically" Example Sentences

1. The process of fermentation is thermodynamically favorable.
2. The second law of thermodynamics dictates that entropy always increases.
3. The efficiency of a heat engine is limited by thermodynamic principles.
4. This reaction is thermodynamically feasible, but the activation energy is too high.
5. The thermodynamically stable form of carbon is graphite.
6. The thermodynamic equilibrium of a system is achieved when all processes come to a stop.
7. The decomposition of water is not thermodynamically spontaneous without the input of energy.
8. The thermodynamic properties of a gas are described by the ideal gas law.
9. The free energy change of a reaction determines whether it is thermodynamically favorable or not.
10. The formation of a crystal lattice is a thermodynamically favored process.
11. The thermodynamic stability of a protein is crucial to its function.
12. Phase transitions between solids, liquids, and gases are governed by thermodynamic principles.
13. The thermodynamic potential of a system is a measure of its internal energy.
14. A thermodynamically reversible process can be undone without any net change to the system or surroundings.
15. Entropy is a thermodynamic property that measures the degree of disorder in a system.
16. Thermodynamic data can be used to calculate the free energy change of a reaction at any temperature.
17. The thermodynamic principles that govern chemical reactions are universal and apply to all systems.
18. The Gibbs free energy is a thermodynamic property that combines the effects of enthalpy and entropy.
19. The probability of observing a particular state of a system is determined by its thermodynamic parameters.
20. The thermodynamic stability of a molecule is related to its electronic structure and bonding.
21. The laws of thermodynamics have been verified experimentally across a wide range of physical systems.
22. The thermodynamic behavior of colloidal particles can be complex and unpredictable.
23. Many materials exhibit thermodynamic instability at high temperatures or pressures.
24. The thermodynamic profile of a reaction can be used to design more efficient synthetic routes.
25. The thermodynamic limit of efficiency for a solar cell is determined by the energy gap between its materials.
26. The thermodynamic stability of minerals and rocks is often linked to their geological history.
27. Phase diagrams illustrate the thermodynamic behavior of a material as a function of composition and temperature.
28. The thermodynamic properties of gases at high pressures and temperatures are important for understanding planetary interiors.
29. The thermodynamic stability of a material can be improved by doping it with impurities.
30. Various thermodynamic models have been developed to describe the behavior of complex systems such as proteins or polymers.

Common Phases

1. Thermodynamically, the reaction is exothermic;
2. The device operates thermodynamically;
3. Thermodynamically speaking, the system is in equilibrium;
4. By considering the thermodynamics, we can predict the behavior of the system;
5. Thermodynamically, the process is reversible;
6. The equation is thermodynamically correct;
7. The efficiency of the engine is dependent on the thermodynamic cycle;
8. Thermodynamically, the entropy change is constant;
9. The thermodynamic properties of the substance are critical for its behavior.

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