energy cant be made nor created it would depend on what type of energy
Breaking covalent bonds requires input of energy, not the release of energy. When covalent bonds are broken, energy is absorbed by the molecules involved in the process.
Chemical reactions such as hydrolysis or combustion can weaken high energy bonds by breaking them and releasing energy. Enzymes can also be involved in catalyzing these reactions to lower the activation energy required to break the bonds.
In an energy storage molecule like adenosine triphosphate (ATP), the energy is stored in the bonds between the phosphate groups. When these bonds are broken, energy is released for cellular processes.
Chemical energy comes from the breaking or forming of chemical bonds in molecules. When bonds break, energy is released, and when bonds form, energy is absorbed. This energy comes from the arrangement of atoms and their interactions within a molecule.
The process of breaking bonds is endothermic, meaning it requires energy input to break the bonds.
Breaking covalent bonds requires input of energy, not the release of energy. When covalent bonds are broken, energy is absorbed by the molecules involved in the process.
no, some reactions are spontenous.
ATP (adenosine triphosphate) stores and transfers energy within cells through the breaking of its high-energy phosphate bonds. When these bonds are broken, energy is released that can be used for cellular activities such as muscle contractions, nerve impulses, and biochemical reactions. This process of breaking down ATP into ADP (adenosine diphosphate) and inorganic phosphate releases energy that powers cellular functions.
The energy in a sucrose molecule is stored in the interatomic bonds such as the carbon-oxygen bonds and the oxygen-hydrogen bonds.
The energy in a sucrose molecule is stored in the interatomic bonds such as the carbon-oxygen bonds and the oxygen-hydrogen bonds.
The energy in a glucose molecule is stored in the bonds between the atoms.
when you break the bonds of the glucose molecule you get energy.
Chemical reactions such as hydrolysis or combustion can weaken high energy bonds by breaking them and releasing energy. Enzymes can also be involved in catalyzing these reactions to lower the activation energy required to break the bonds.
breaking the bonds in a disaccharide/ polysaccharide
energy is release by the breaking of bonds
Bond Dissociation Enthalpy is the energy required for breaking the bonds. This energy is supplied mostly by giving thermal energy (Heat).
In an energy storage molecule like adenosine triphosphate (ATP), the energy is stored in the bonds between the phosphate groups. When these bonds are broken, energy is released for cellular processes.