In cellular respiration, the primary inputs of matter are glucose and oxygen. Glucose, derived from carbohydrates, serves as the primary energy source, while oxygen is essential for the aerobic process. The inputs of energy are the chemical bonds in glucose, which are broken down during the process to release energy. This energy is ultimately captured in the form of ATP, which cells use for various functions.
Decomposition and cellular respiration are connected through the breakdown of organic matter. Decomposers break down organic material into simpler substances, releasing energy in the process. This energy is then used by organisms, including humans, through cellular respiration to produce ATP, the energy currency of cells.
Cellular respiration conserves matter by transforming organic molecules, such as glucose, into usable energy in the form of ATP while recycling their components. During this process, carbon atoms from glucose are released as carbon dioxide, which can be used by plants in photosynthesis, thus maintaining the cycling of matter in ecosystems. Additionally, the by-products of cellular respiration, including water and energy, are utilized by other organisms, further integrating the flow of matter within biological systems. Overall, cellular respiration exemplifies the conservation of matter through its continuous cycling and transformation within the biosphere.
Cellular respiration is essential for producing the energy (in the form of ATP) that cells need to carry out their functions. It is the process by which cells break down glucose and other food molecules to release energy for metabolism. Without cellular respiration, cells would not have the energy needed to survive and function.
I believe you may have misinterpreted a concept. You cannot convert energy into matter. However, if you meant "what process is glucose converted to energy?" then the answer would be glucose hydrolysis and the Krebs Cycle (for organisms involved in oxidative phosphorylation). It's a very beautiful process involving innumerable proteins and molecules =D.
the photosynthesis produces molecules, while cellular respiration, breaks it down. An example is when I have sex with your mom and we have you, however she sucks my penis so much and I put it into her vag that we have more kids, then you hate it so you kill the other kids.
Decomposition and cellular respiration are connected through the breakdown of organic matter. Decomposers break down organic material into simpler substances, releasing energy in the process. This energy is then used by organisms, including humans, through cellular respiration to produce ATP, the energy currency of cells.
Yes, decomposers and detritus feeders do cellular respiration. They break down organic matter through the process of cellular respiration to obtain energy for their survival and growth. This process involves the breakdown of complex molecules into simpler compounds, releasing energy in the form of ATP.
Cellular respiration occurs in all levels of the food chain, as it is a fundamental process for energy production in living organisms. Producers, such as plants, perform cellular respiration to convert glucose into usable energy after photosynthesis. Consumers, including herbivores and carnivores, also rely on cellular respiration to break down the organic matter they consume, releasing energy for growth, movement, and maintenance. Thus, cellular respiration is essential for energy transfer throughout the entire food chain.
Cellular respiration conserves matter by transforming organic molecules, such as glucose, into usable energy in the form of ATP while recycling their components. During this process, carbon atoms from glucose are released as carbon dioxide, which can be used by plants in photosynthesis, thus maintaining the cycling of matter in ecosystems. Additionally, the by-products of cellular respiration, including water and energy, are utilized by other organisms, further integrating the flow of matter within biological systems. Overall, cellular respiration exemplifies the conservation of matter through its continuous cycling and transformation within the biosphere.
Cellular respiration is essential for producing the energy (in the form of ATP) that cells need to carry out their functions. It is the process by which cells break down glucose and other food molecules to release energy for metabolism. Without cellular respiration, cells would not have the energy needed to survive and function.
Cellular respiration is a cycle of matter and a flow of energy. It takes place just outside and inside the cell's mitochondria.
I believe you may have misinterpreted a concept. You cannot convert energy into matter. However, if you meant "what process is glucose converted to energy?" then the answer would be glucose hydrolysis and the Krebs Cycle (for organisms involved in oxidative phosphorylation). It's a very beautiful process involving innumerable proteins and molecules =D.
The inputs for photosynthesis are light (which is energy), water (which is matter), and carbon dioxide (which is also matter).
The primary method by which most heterotrophic organisms obtain energy for their cellular processes is by consuming and breaking down organic matter through the process of cellular respiration.
Yes, trees, plants, mushrooms, deer, dogs, and humans all perform cellular respiration, although the processes may vary slightly among them. Cellular respiration is essential for converting glucose and oxygen into energy (ATP), which is vital for all living organisms. While plants and trees also carry out photosynthesis to produce glucose, they still rely on cellular respiration to utilize that energy. Mushrooms, deer, dogs, and humans primarily obtain energy through cellular respiration by consuming organic matter.
the photosynthesis produces molecules, while cellular respiration, breaks it down. An example is when I have sex with your mom and we have you, however she sucks my penis so much and I put it into her vag that we have more kids, then you hate it so you kill the other kids.
Yes. Plants and animals need energy. Energy must therefore be made in the cells.No, only animal cells carry on cellular respiration.animal cells carryon cellular respiration. plant cells carry out photosynthesis which is the opposite of respiration.