chlrophyl?
CO2+WATER ===========
should be an arrow, and on the arrow there is chlorophyl and sunlight cos a plant needs these to photsynthesize
Yes. Photosynthesis is an anabolic reaction, meaning energy is required to make the reaction run. Enzymes are especially important in these reactions because they lower the activation energy (Ea) of the reaction. This allows compounds to be combined and transformed with less energy.
protein is essential since all enzymes are protein
Yes,there are enzymes.They drive the photosynthesis.
They have photosynthetic pigments. They have enzymes and other molecules
The fluid within a chloroplast that contains enzymes involved in the synthesis of carbohydrates during photosynthesis is called stroma. Stroma is a semi-fluid substance where the Calvin cycle takes place, which is the part of photosynthesis responsible for producing carbohydrates like glucose.
Enzymes for photosynthesis are in chloroplasts.Mitochondria are responsible for respiration.
respiration is but photosynthesis isn't.
Yes. Photosynthesis is an anabolic reaction, meaning energy is required to make the reaction run. Enzymes are especially important in these reactions because they lower the activation energy (Ea) of the reaction. This allows compounds to be combined and transformed with less energy.
photosynthesis
protein is essential since all enzymes are protein
Enzymes stop working at high teperatures during photosynthesis because the heat changes their shape. If the enzymes shape is altered then it can not catalize what it is supposed to.
Temperature can impact the process of photosynthesis by affecting the enzymes that are involved in the chemical reactions. Higher temperatures can increase the rate of photosynthesis up to a certain point, but too high temperatures can denature the enzymes and slow down or stop the process. Conversely, lower temperatures can slow down the rate of photosynthesis as the enzymes work more slowly.
Yes,there are enzymes.They drive the photosynthesis.
Photosynthesis requires many enzymes to function. An example of one of these enzymes is rubisco, which is involved in carbon fixation to RuBP. All enzymes have a specific range of variables in which they perform optimally, like pH ranges or in this case temperature. At a boiling point temperature, it is likely photosynthesis will be nonexistent or at minimal levels. This is because at such a high temperature the enzymes can become denatured, and fail to perform. This of course is not true for all types of photosynthesis, as there are some bacteria that are able to perform photosynthesis at extreme temperatures.
They have photosynthetic pigments. They have enzymes and other molecules
The rate of photosynthesis depends on temperature the same way enzymes depend on temperature. Photosynthesis involves enzyme assistance. Enzymes are biological catalysts that speed up chemical reactions. Enzymes are affected by pH and temperature. If the pH is too acidic or basic, enzymes will be denatured (which means they will change shape and not be able to catalyze reactions as well or entirely). Same goes for temperature. If the temperature is too cold or too hot, the enzymes might deactivate, or their efficiency will be inhibited. So, if the temperature of the organism's environment is too high or low, the rate of photosynthesis will decrease because the enzymes aren't working properly. On the other hand, if the temperature is optimal for enzyme activity, the rate will increase, as production is at its high.
The rate of photosynthesis in relation to temperature forms a bell curve. At low temperatures the enzymes responsibility for photosynthesis have very little energy so the rate of photosynthesis is very slow. If it is cold enough for water to freeze it can be very harmful to a plant. As the temperature increases, the enzymes get more energy so the rate of photosynthesis increases. If it gets too hot the enzymes begin to lose their shape (denature). This means they are unable to function properly and the rate of photosynthesis decreases again. Also, at higher temperatures the stomata close to prevent water loss. This also stops gas exchange which slows photosynthesis even further. If it is hot enough for water to boil this can be very harmful.