ADP stands for American Data Processing. This is just a company that specializes in payroll processing and nothing else. They do automatic deposit as well for companies.
ADP stands doe adenosine diphosphate have 2 phosphate molecules. the prefix "di" gives a clear clue of what it is. It's former form ATP adenosine triphosphate have 3 phosphate molecules.
The purpose of ATP is to store energy. ATP stands for adenosine tri-phosphate, and the energy is mostly stored in the third phosphate bond. ATP is used by cells 24/7 as a form of energy. The purpose of ADP is to have to potential to store energy. ADP stands for adenosine di-phosphate, and when another phosphate is added onto the molecule it is called ATP and will store energy. When ATP releases energy the third phosphate comes off and it becomes ADP.
It is known as ADP
An ADP molecule is composed of three phosphate groups, a ribose sugar, and an adenine base. It appears as a nucleotide with two phosphate groups attached to the ribose sugar. ADP stands for adenosine diphosphate.
ADP stands for adenosine diphosphate, and NADP stands for nicotinamide adenine dinucleotide phosphate.
ATP stands for adenosine tri phosphate. ADP stands for adenosine di phosphate. ATP has three phosphate molecules. ADP has only two phosphate molecules.
ADP stands for American Data Processing. This is just a company that specializes in payroll processing and nothing else. They do automatic deposit as well for companies.
It is called ADP because it has one less phosphate group. The T stands for tri- and D now stands for di- or two.
Adenosine DiPhosphate ( :Adenosine triphosphate (or ATP) is a molecule that a cell uses to extract and store energy from other molecules such as carbohydrates.
ADP stands doe adenosine diphosphate have 2 phosphate molecules. the prefix "di" gives a clear clue of what it is. It's former form ATP adenosine triphosphate have 3 phosphate molecules.
No, oxygen and phosphate do not directly combine to form ATP. ATP is produced through a series of chemical reactions in the mitochondria called cellular respiration, where oxygen is used as a reactant to help generate ATP from the breakdown of glucose or other energy sources.
The purpose of ATP is to store energy. ATP stands for adenosine tri-phosphate, and the energy is mostly stored in the third phosphate bond. ATP is used by cells 24/7 as a form of energy. The purpose of ADP is to have to potential to store energy. ADP stands for adenosine di-phosphate, and when another phosphate is added onto the molecule it is called ATP and will store energy. When ATP releases energy the third phosphate comes off and it becomes ADP.
The letter "E" in ATP stands for "energy". In the conversion of ATP to ADP, the high-energy phosphate bond in ATP is hydrolyzed, releasing energy that is used for cellular processes such as muscle contraction or active transport.
The "P" in ATP (adenosine triphosphate) and ADP (adenosine diphosphate) stands for "phosphate." ATP contains three phosphate groups, while ADP has two. These phosphate groups are crucial for storing and releasing energy in cellular processes. The transfer of a phosphate group from ATP to other molecules is a key mechanism through which energy is utilized in biological systems.
ADP stands for Adenosine Diphosphate, a nucleotide that plays a crucial role in cellular energy transfer. It is formed when adenosine triphosphate (ATP) loses a phosphate group, releasing energy that cells use for various biological processes. Additionally, ADP is also commonly known as Automatic Data Processing, Inc., a provider of human resources management software and services.
In a legal context, ADP typically stands for "Automatic Data Processing," which refers to the electronic processing of data, often related to payroll and human resources. However, in some jurisdictions, ADP could also refer to "Alternative Dispute Resolution," a method for resolving disputes outside of traditional court proceedings. The specific meaning can vary based on the context in which it is used.