Is this a statement or a question? I have no idea what you are asking. Are you needing the the names of these pathways, enzymes, or substrates? Pathways: Animals * Glycolysis * Kreb's Cycle * Electron Transport Chain * Oxidative Phosphorylation (ATP Synthase) Plants * Calvin Cycle Enzymes: * Too many to name or be more specific Substrates: * Also too many to name unless you are talking about a specific pathway If you are asking which enzymes occur in both aerobic respiration and photosynthesis: * Glyceraldehyde 3-phosphate dehydrogenase * Phosphoglycerate kinase * Triosephosphate isomerase (TIM) * Aldolase
Both aerobic respiration and photosynthesis involve the exchange of gases (oxygen and carbon dioxide). Both processes require the use of electron transport chains to generate ATP. Additionally, both processes involve the creation and utilization of a proton gradient across a membrane to generate energy.
Carbon dioxide is formed by the metabolic reactions of cellular respiration. Trees thrive on this carbon dioxide. Tree then let off oxygen which humans thrive on. Cellular Respiration can also produce water and energy in a cell to do work.
The compound that serves as a metabolic intermediate in the light-independent reactions of photosynthesis is called glyceraldehyde-3-phosphate (G3P). This molecule is produced through the Calvin cycle, which is responsible for converting carbon dioxide into usable sugars for the plant.
cellular respiration occurs in the mitochondria
During photosynthesis, plants convert sunlight into chemical energy stored in glucose, while during cellular respiration, organisms convert glucose into usable energy in the form of ATP. Some energy is lost as heat during these processes due to inefficiencies in energy transfer and metabolic reactions.
There cellular metabolic processes that occur in all living things refers to all chemical reactions in the cells. Cellular respiration is one such process.
Chemical reactions occur in respiration, photosynthesis, and more life processes. Respiration and photosynthesis are both essential for life to exist.
to form atp to fuel metabolic reactions
No. Mitochondria carry out cellular respiration. Photosynthesis takes place in chloroplasts.
adenosine triphosphate
Organisms carry out a variety of chemical reactions such as photosynthesis (conversion of light energy into chemical energy), cellular respiration (conversion of glucose into ATP for energy), and protein synthesis (formation of proteins from amino acids). Other reactions include digestion (breakdown of food into nutrients), fermentation (anaerobic breakdown of sugars), and various metabolic pathways (biosynthesis and breakdown of molecules).
Both aerobic respiration and photosynthesis involve the exchange of gases (oxygen and carbon dioxide). Both processes require the use of electron transport chains to generate ATP. Additionally, both processes involve the creation and utilization of a proton gradient across a membrane to generate energy.
Cellular respiration and photosynthesis.
Yes, light is common to both cellular respiration and the light reactions of photosynthesis. In photosynthesis, light energy is used to convert water and carbon dioxide into glucose and oxygen. In cellular respiration, the energy stored in glucose is released through a series of reactions to produce ATP, and light is not directly involved in this process.
O2 is the byproduct. animals using it for respiration.
Photosynthesis: CO2 +H2O + Light Energy ----> O2 + carbohydrate Photsynthesis takes place in plants cells and in some bacteria. It takes place in the chloroplasts, which are little green circles of pigment. The light reactions take place in the chloroplast's thylakoids and the dark reactions take place in the stroma. The light reactions reduce water into oxygen and the dark reactions convert CO2 into energy. Respiration: O2 + carbohydrate -----> CO2 + H20 + energy CELL RESPIRATION OCCURS IN THE MITOCHONDRIA!!!!!!!
Adenosine triphosphate (ATP) is the intermediate molecule produced by respiration to provide the energy for most metabolic reactions. ATP stores and transfers energy within cells for various cellular processes.