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Is it true that the entropy of a system decreases over time?

false


Is Chilling a liquid will increase evaporation at the surface true or false?

It is not true.


Entropy how quickly things get messy?

false


Entropy is the measure of disorder or unusable energy in a system true or false?

True. Entropy is a measure of the level of disorder or randomness in a system. It reflects the amount of energy that is not available to do work.


True or false chilling a liquid will increase evaporation at the surface?

False. Chilling a liquid will actually decrease evaporation at the surface because lower temperatures slow down the movement of molecules, reducing their ability to escape into the air.


Is the measure of the amount of disorder in a system?

disorder


Entropy is the amount of heat a system releases?

False


Will chilling a liquid will increase the evaporation at the surface?

false


Friction doesn't convert energy - it actuaaly destroys it true or false?

False. Energy is converted to another form. However, it is converted to UNUSABLE energy.


Spray guns atomize liquid true or false?

spray guns atomize liquid true or false


Is it true or false that the frequencies of radiation increase as the wavelengths increase?

False. The frequencies of radiation decrease as the wavelengths increase. This is because frequency and wavelength are inversely proportional in the electromagnetic spectrum.


True or False A large positive value of entropy tends to favor products of a chemical reaction?

True, a large positive value of entropy tends to favor products of a chemical reaction. However, entropy can be offset by enthalpy; a large positive value of enthalpy tends to favor the reactants of a chemical reaction. The true measure to determine which side of a chemical reaction is favored is the change in Gibbs' free energy, which accounts for both entropy and enthalpy, as calculated by: Change in Gibbs = Change in Enthalpy - Temp in Kelvin * Change in Entropy A negative value of Gibbs free energy will always favour the products of a chemical reaction.