Examples include heating water, charging a battery, moving an object against gravity, photosynthesis in plants, and the synthesis of complex molecules in cells.
Processes such as gravity, diffusion, and osmosis do not require energy input to occur. Additionally, objects at rest do not require energy to maintain their state.
No, potential energy does not require the input of cellular energy. Potential energy is the energy stored within an object due to its position or condition, such as gravitational potential energy or elastic potential energy. This energy can be released or converted to other forms without the need for cellular energy.
The law of conservation of energy states that energy cannot be created or destroyed, only transferred or converted. Therefore, the output work cannot be greater than the input work in an isolated system. Any increase in output work would require additional energy input.
Yes, vaporizing requires an input of energy to heat the substance to its vaporization point. This energy causes the substance to change from a solid or liquid state to a vapor or gas state.
No, condensation does not require an input of energy. It is the process in which a gas transforms into a liquid state by releasing heat energy. This heat energy is typically given off to the surroundings.
Endothermic reactions require energy input to occur. The energy needed is absorbed from the surroundings, resulting in a decrease in temperature during the reaction.
Yes.
Diffusion is a body process that does not require energy from respiration.
Processes such as gravity, diffusion, and osmosis do not require energy input to occur. Additionally, objects at rest do not require energy to maintain their state.
Yes, the process of vaporization does require an input of energy. The energy is required to break the intermolecular forces of a given substance. The intermolecular forces is usually very strong.
no there must at least be an initial input to get it started.
False. Not all chemical reactions require catalysis. Some reactions occur spontaneously, while others may require an initial input of energy in the form of activation energy. Catalysis is a process that lowers the activation energy required for a reaction to occur, but it is not necessary for all reactions.
Yes, all ovens/cookers require some energy (fuel) input in order to get them to heat up. For example electric hobs require an electrical imput, gas cookers require gas as their fuel (energy) etc... Even solar cookers have a solar energy input.
Osmosis is the diffusion of water across a membrane, and does not require the input of energy. Active transport requires energy input.
No, potential energy does not require the input of cellular energy. Potential energy is the energy stored within an object due to its position or condition, such as gravitational potential energy or elastic potential energy. This energy can be released or converted to other forms without the need for cellular energy.
endothermic reactions
The law of conservation of energy states that energy cannot be created or destroyed, only transferred or converted. Therefore, the output work cannot be greater than the input work in an isolated system. Any increase in output work would require additional energy input.