gravity
Materials that transfer energy easily are called conductors. These materials have high thermal or electrical conductivity, which allows energy to move through them quickly and efficiently. Metals like copper and aluminum are commonly used as conductors due to their high conductivity.
Endocytosis is the bulk transport of materials into a cell, using energy in the form of ATP. It is an active process, and the energy is used to move the membranes around the materials to form the vesicles that are needed, and to move the vesicles into the cell.
High temperatures are needed in the diffusion process to provide sufficient energy for atoms or molecules to overcome energy barriers and move from areas of high concentration to low concentration. This allows for faster diffusion rates and more homogenous mixing of materials. Additionally, higher temperatures can increase the atomic mobility and promote solid-state diffusion in materials.
of course it is break glucose into pyruvic acid.
The energy used in living organisms to change materials into new forms and move needed material from one place to another is typically chemical energy. This energy is released through various metabolic processes such as cellular respiration and photosynthesis, allowing organisms to carry out essential functions for survival and growth.
The amount of energy needed to move an electron from one energy level to another is known as the energy difference between the two levels. This energy difference is typically quantified in electron volts (eV) or joules.
Energy
Materials needed by the cells move from the blood into the cells, and waste materials move from the cells into the blood.
Materials such as metals like copper and aluminum are known to have high thermal conductivity, allowing thermal energy to move quickly through them. Additionally, materials like diamond and graphene also possess high thermal conductivity due to the structure of their atomic arrangement, facilitating fast movement of thermal energy.
Energy released from ATP @_@ ;D
"diffusion"
"diffusion"