both are processes that provide energy for cells/organisms. photosynthesis provides energy for photoautotrophs through light reactions in the thylakoids and the Calvin cycle. ellular respiration gives hetertrophs the energy they need through glycolysis, the Krebs cycle, and electron transport system
Transpiration is the process by which water is lost from plants through pores in their leaves called stomata. It is directly related to photosynthesis, as the uptake of water during transpiration allows plants to transport nutrients through their vascular system and support the metabolic processes required for photosynthesis. Additionally, transpiration plays a role in cooling plants, maintaining their temperature and preventing dehydration.
The stomata are structures on a leaf that relate to both photosynthesis and transpiration. The stomata facilitate gas exchange so the carbon dioxide can enter and the oxygen can leave. However, water vapor can also leave through a process called transpiration.
The statement " All the products of Photosynthesis i.e Sugar, Oxygen are the reactants of Cellular Respiration , and all the products of Cellular Respiration i.e Carbon Dioxide are the reactants of Photosynthesis ." ,describes that the two most integral metabolic processes i.e Photosynthesis and cellular respiration are inter-related .
Photosynthesis and cellular respiration are related since they both need each other to work. Both are in autotrophs, both use the electron transport chain, and they use the same equation.
it is related to photosynthesis because of the products glucose and oxygen are used to start cell respiration. Glucose and oxygen carry it out to produce energy.plants also go through cell respiration
the products of photosynthesis are the reactants of cellular respiration
hell no!
Transpiration is the process by which water is lost from plants through pores in their leaves called stomata. It is directly related to photosynthesis, as the uptake of water during transpiration allows plants to transport nutrients through their vascular system and support the metabolic processes required for photosynthesis. Additionally, transpiration plays a role in cooling plants, maintaining their temperature and preventing dehydration.
Photosynthesis' products are the same as the reactants of cellular respiration. In other words photosynthesis makes what cellular respiration uses.
The stomata are structures on a leaf that relate to both photosynthesis and transpiration. The stomata facilitate gas exchange so the carbon dioxide can enter and the oxygen can leave. However, water vapor can also leave through a process called transpiration.
The four plant processes are photosynthesis, respiration, transpiration, and reproduction. Photosynthesis is the process by which plants convert sunlight into energy, respiration is the process of using stored energy for growth and function, transpiration is the loss of water vapor through plant leaves, and reproduction involves the production of seeds or spores for propagation.
The ATP utilized in transpiration is derived from the respiration of organic molecules. This is what is commonly known as aerobic respiration.
sun and transpiration
Transpiration is the process by which plants release water vapor through their leaves. This process helps plants absorb nutrients and minerals from the soil. In turn, photosynthesis, the process by which plants convert sunlight into energy, requires water to take place. Therefore, transpiration plays a crucial role in providing the water necessary for photosynthesis to occur.
The statement " All the products of Photosynthesis i.e Sugar, Oxygen are the reactants of Cellular Respiration , and all the products of Cellular Respiration i.e Carbon Dioxide are the reactants of Photosynthesis ." ,describes that the two most integral metabolic processes i.e Photosynthesis and cellular respiration are inter-related .
Photosynthesis and cellular respiration are related since they both need each other to work. Both are in autotrophs, both use the electron transport chain, and they use the same equation.
It invoves in respiration. Specifically it is aerobic respiration