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If a catalyst is added to a system at equilibrium and the temperature and pressure remain constant there will be no affect on the?

Equilibrium position. The catalyst speeds up the rate at which equilibrium is reached by lowering the activation energy for both the forward and reverse reactions equally. The concentrations of reactants and products at equilibrium remain the same.


What factors doesn't change the equilibrium constant of a reaction?

The equilibrium constant of a reaction is unaffected by changes in concentration, pressure, or volume, as these do not alter the intrinsic properties of the reaction at a given temperature. Additionally, the equilibrium constant remains constant regardless of the presence of catalysts, which only speed up the rate at which equilibrium is reached but do not change the position of equilibrium itself. However, the equilibrium constant is temperature-dependent; a change in temperature will alter its value.


If a liquid is sealed in a container and kept at constant temperature how does its vapor pressure change over time?

If a liquid is sealed in a container and kept at a constant temperature, its vapor pressure will initially increase until it reaches a constant value, known as the equilibrium vapor pressure. At this point, the rate of evaporation of the liquid equals the rate of condensation of the vapor, resulting in no further change in vapor pressure over time. This equilibrium is maintained as long as the temperature remains constant and the container remains sealed.


If a liquid is sealed in a container and kept constant temperature how does its vapor pressure change over time?

If a liquid is sealed in a container at a constant temperature, its vapor pressure will initially increase until it reaches a steady state, known as equilibrium. At this point, the rate of evaporation of the liquid equals the rate of condensation of the vapor, resulting in a constant vapor pressure. Once equilibrium is achieved, the vapor pressure remains stable over time, as long as the temperature remains constant and no additional liquid is added or removed.


What ways can equilibrium be shifted?

Equilibrium can be shifted by changing the concentration of reactants or products, adjusting the temperature, altering the pressure (for gases), or adding a catalyst. By changing these factors, the equilibrium position can be shifted towards either the products or the reactants to favor the desired reaction.

Related Questions

If a catalyst is added to a system at equilibrium and the temperature and pressure remain constant there will be no affect on the?

Equilibrium position. The catalyst speeds up the rate at which equilibrium is reached by lowering the activation energy for both the forward and reverse reactions equally. The concentrations of reactants and products at equilibrium remain the same.


What factors doesn't change the equilibrium constant of a reaction?

The equilibrium constant of a reaction is unaffected by changes in concentration, pressure, or volume, as these do not alter the intrinsic properties of the reaction at a given temperature. Additionally, the equilibrium constant remains constant regardless of the presence of catalysts, which only speed up the rate at which equilibrium is reached but do not change the position of equilibrium itself. However, the equilibrium constant is temperature-dependent; a change in temperature will alter its value.


Vapor pressure is measured when a liquid and its vapor are?

in a state of dynamic equilibrium at a constant temperature. At this point, the rate of vaporization equals the rate of condensation, resulting in a constant pressure above the liquid known as the vapor pressure.


Is it true that an equilibrium constant is not changed by a change in pressure?

Yes, it is true that an equilibrium constant is not changed by a change in pressure.


What is the temperature at which a liquid and gaseous phases are in equilibrium?

The temperature at which a liquid and gas are in equilibrium is called the boiling point. At this temperature, the vapor pressure of the liquid equals the atmospheric pressure, allowing the liquid to change into gas and vice versa at a constant rate.


What happens to the pressure of a confined gas at a constant temperature when the volume is reduced by half?

When the volume of a confined gas is reduced by half at a constant temperature, the pressure of the gas will double according to Boyle's Law. This is because the product of pressure and volume is constant for a given amount of gas at constant temperature. When the volume decreases, the pressure increases to maintain this equilibrium.


If a liquid is sealed in a container and kept at constant temperature how does its vapor pressure change over time?

If a liquid is sealed in a container and kept at a constant temperature, its vapor pressure will initially increase until it reaches a constant value, known as the equilibrium vapor pressure. At this point, the rate of evaporation of the liquid equals the rate of condensation of the vapor, resulting in no further change in vapor pressure over time. This equilibrium is maintained as long as the temperature remains constant and the container remains sealed.


If a liquid is sealed in a container and kept constant temperature how does its vapor pressure change over time?

If a liquid is sealed in a container at a constant temperature, its vapor pressure will initially increase until it reaches a steady state, known as equilibrium. At this point, the rate of evaporation of the liquid equals the rate of condensation of the vapor, resulting in a constant vapor pressure. Once equilibrium is achieved, the vapor pressure remains stable over time, as long as the temperature remains constant and no additional liquid is added or removed.


6 ways to disturb a chemical equilibrium?

Changing the temperature of the system. Altering the pressure of the system. Adding or removing reactants or products from the system. Introducing a catalyst that shifts the equilibrium position. Changing the volume of the system. Modifying the concentration of reactants or products in the system.


If the volume and number of moles of gas are held constant as the temperature increase what will the pressure do?

If the volume and number of moles of gas are constant, then according to the ideal gas law, pressure is directly proportional to temperature. As temperature increases, the pressure will also increase in order to maintain equilibrium.


What ways can equilibrium be shifted?

Equilibrium can be shifted by changing the concentration of reactants or products, adjusting the temperature, altering the pressure (for gases), or adding a catalyst. By changing these factors, the equilibrium position can be shifted towards either the products or the reactants to favor the desired reaction.


Is it true that a change in pressure may affect the equilibrium position but has no effect on the equilibrium constant?

Yes, a change in pressure may affect the equilibrium position by shifting the reaction towards the side with more moles of gas to relieve the pressure change, but it has no effect on the equilibrium constant because the equilibrium constant is determined solely by the reaction's intrinsic properties.