QUESTION IMAGE
Question
- how do we get energy to fuel our cells?
- what organic molecule is broken down into chemical energy to fuel our cells?
- compare/contrast structure of atp & adp.
- which structure, atp or adp, contains more stored energy? where is the energy?
- which energy is high and which is low energy?
- some organisms, such as ___, absorb energy from sunlight.
- which carbon - based molecule stores the most energy and provides the most atp when broken down?
- where is chemical energy stored in foods?
- explain the atp/adp cycle using a diagram.
Brief Explanations
- We obtain energy to fuel our cells through cellular respiration, which breaks down organic molecules like glucose to produce ATP.
- Organic molecules are broken down into chemical energy by metabolic processes in the cells.
- ATP (adenosine - triphosphate) has a high - energy phosphate bond structure compared to ADP (adenosine - diphosphate). When a phosphate group is added to ADP, ATP is formed, storing energy; when the phosphate bond in ATP is broken, energy is released.
- Energy is stored in chemical bonds, especially in high - energy molecules like ATP.
- High - energy molecules like ATP store more energy in their phosphate bonds compared to lower - energy molecules.
- Organic molecules such as carbohydrates, fats, and proteins contain high energy in their chemical bonds.
- Photosynthetic organisms absorb energy from sunlight and convert it into chemical energy in the form of glucose and other organic molecules.
- Carbohydrates (such as glucose), fats, and proteins are carbon - based molecules that store energy. When these molecules are broken down during metabolism, the energy stored in their chemical bonds is released to form ATP.
- Chemical energy in foods is stored in the chemical bonds of molecules such as carbohydrates, fats, and proteins.
- The ATP/ADP cycle involves the conversion of ADP to ATP by adding a phosphate group (endergonic reaction, storing energy) and the conversion of ATP to ADP by removing a phosphate group (exergonic reaction, releasing energy). This cycle is central to energy transfer in cells.
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- Through cellular respiration.
- By metabolic processes breaking down organic molecules.
- ATP has a high - energy phosphate bond structure compared to ADP.
- In chemical bonds.
- High - energy molecules like ATP.
- Carbohydrates, fats, proteins.
- Photosynthetic organisms.
- Carbohydrates, fats, proteins.
- In the chemical bonds of molecules like carbohydrates, fats, proteins.
- ADP is converted to ATP by adding a phosphate group to store energy, and ATP is converted to ADP by removing a phosphate group to release energy.