They help the plant conserve water and synthesize glucose efficiently under hot, dry conditions.
C4 and CAM are two alternative photosynthesis pathways found in plants. C4 plants have a specialized mechanism to improve CO2 fixation in hot and dry conditions, while CAM plants use a temporal separation of carbon fixation during the night and day to conserve water.
CAM (Crassulacean Acid Metabolism) and C4 pathways are more efficient than C3 pathway in photosynthesis because they have additional carbon-fixing steps that optimize CO2 uptake and minimize water loss. C4 plants have a spatial separation of carbon fixation and the Calvin cycle in different cells, while CAM plants have a temporal separation by fixing CO2 at night and using it during the day. Both pathways are adaptations to hot and dry environments.
Plants use the C4 and CAM pathways to minimize water loss during photosynthesis. These pathways allow plants to efficiently process carbon dioxide while minimizing the opening of stomata, which reduces water loss through transpiration. C4 plants spatially separate carbon fixation and the Calvin cycle, while CAM plants temporally separate these processes.
No, C4 and CAM plants are adaptations to arid or dry environments. These plants have evolved specialized pathways for photosynthesis to minimize water loss and maximize CO2 intake, which is beneficial in regions with limited water availability.
Some alternative pathways for photosynthesis include C4 photosynthesis and CAM photosynthesis. C4 plants have a specialized mechanism to concentrate carbon dioxide in specific cells, whereas CAM plants open their stomata at night to take in carbon dioxide and perform the Calvin cycle during the day. These alternative pathways help plants in hot and arid environments to minimize water loss and increase efficiency in capturing carbon dioxide.
cam pathway
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A 2002 Dodge does have a cam sensor, but the 318 was not offered after 2001.
C4 and CAM are two alternative photosynthesis pathways found in plants. C4 plants have a specialized mechanism to improve CO2 fixation in hot and dry conditions, while CAM plants use a temporal separation of carbon fixation during the night and day to conserve water.
A cam lock works by using a rotating cam to secure an object in place. The primary function of a cam lock is to provide a quick and easy way to secure objects by turning the key to engage the cam and lock the object in place.
It has a single cam. But the question is confusing. Usually it is asked if it is a single or dual overhead cam when it is overhead head cam. Your engine is a pushrod, which was only offered in single cam
Cam locks work by using a rotating cam to secure or release an object. The primary function of cam locks is to provide a simple and effective way to secure objects by preventing unauthorized access or movement.
CAM (Crassulacean Acid Metabolism) and C4 pathways are more efficient than C3 pathway in photosynthesis because they have additional carbon-fixing steps that optimize CO2 uptake and minimize water loss. C4 plants have a spatial separation of carbon fixation and the Calvin cycle in different cells, while CAM plants have a temporal separation by fixing CO2 at night and using it during the day. Both pathways are adaptations to hot and dry environments.
Plants use the C4 and CAM pathways to minimize water loss during photosynthesis. These pathways allow plants to efficiently process carbon dioxide while minimizing the opening of stomata, which reduces water loss through transpiration. C4 plants spatially separate carbon fixation and the Calvin cycle, while CAM plants temporally separate these processes.
No, C4 and CAM plants are adaptations to arid or dry environments. These plants have evolved specialized pathways for photosynthesis to minimize water loss and maximize CO2 intake, which is beneficial in regions with limited water availability.
Some alternative pathways for photosynthesis include C4 photosynthesis and CAM photosynthesis. C4 plants have a specialized mechanism to concentrate carbon dioxide in specific cells, whereas CAM plants open their stomata at night to take in carbon dioxide and perform the Calvin cycle during the day. These alternative pathways help plants in hot and arid environments to minimize water loss and increase efficiency in capturing carbon dioxide.
The basic advantage of a cam is that it could dispense with having to recirculate exhaust gas through EGR systems. its is less resistance so more potential power.