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In this way, the thermodynamically more stable product is always favoured.
Since the reaction is thermodynamically favorable, the change in free energy for the step will be negative.
In other words, there is only one thermodynamically stable contact angle.
This means that given time the more thermodynamically stable product will be favored.
At standard temperature and pressure, graphite is the thermodynamically stable form.
In this case, the cocrystal is likely to be thermodynamically favored.
Others are not thermodynamically stable and will dimerise slowly over days.
If outside, then the idea that the universe is a thermodynamically closed system will be false, or at least only partly true.
The model is however not fully thermodynamically consistent due to its two liquid mixture approach.
It appears to be relatively thermodynamically more stable than the E domain.
This compound is thermodynamically unstable, and has not been produced in bulk.
The derivation is thermodynamically rigorous at a given level of expansion.
It is the most thermodynamically stable of the silicon nitrides.
The speed can be calculated thermodynamically based on adiabatic expansion.
And particularly, how their existence was thermodynamically possible.
It is a thermodynamically distinct type of material that merely gets more viscous with cold.
Thermodynamically though the two processes are the same.
The protein molecules want to reform those interactions to return to their most thermodynamically stable state.
The fact that a reaction is thermodynamically possible does not mean that it will actually occur.
Soviet engineers believed their design to be thermodynamically superior.
The reaction is thermodynamically favored only at high temperatures.
An electrodynamic tether can be described as a type of thermodynamically "open system".
Any reaction that decreases the overall Gibbs free energy of a system is thermodynamically spontaneous.
The nutrient consists of compounds that are thermodynamically unstable under the growth conditions.
Most useful structures require complex and thermodynamically unlikely arrangements of atoms.