Photosynthesis. it isn't photosynthesis it is mitochodria
NADPH is an energy carrier that is essential for cellular processes such as photosynthesis in plants and oxidative stress defense in animals. It is involved in reactions that require reducing power, such as the synthesis of fatty acids, cholesterol, and nucleotides.
The high-energy electron carrier needed to transform 2 electrons and one hydrogen ion into NADPH is NADP+ (nicotinamide adenine dinucleotide phosphate). During this process, NADP+ accepts the electrons and hydrogen ion, becoming reduced to NADPH. This reaction is essential in photosynthesis and various metabolic pathways where NADPH serves as a reducing agent.
Carbohydrates (starch, cellulose) AND oxygen
atp and nadph
to make energy-carrier molecules like NADPH Apex
Yes, an energy carrier is needed in the light-independent reactions, also known as the Calvin cycle. During the light-dependent reactions of photosynthesis, ATP and NADPH are produced as energy carriers. These molecules provide the necessary energy and reducing power to convert carbon dioxide into glucose during the light-independent reactions. Without ATP and NADPH, the Calvin cycle would not be able to proceed effectively.
To make energy-carrier molecules like NADPH
Photosynthesis is the reaction that requires direct energy from sunlight to produce energy carrier molecules like ATP and NADPH in plants.
NADPH and ATP are produced by the light reactions. The ATP is a high energy molecule produced by photophosphorylation while the NADPH is produced at the end of the electron transport chain.
NADPH
Energy from ATP and electrons from NADPH... gotta love novanet right?
NADPH (nicotinamide adenine dinucleotide phosphate) is the electron carrier that provides the high-energy electrons required to make carbon-hydrogen bonds in the third stage of photosynthesis (Calvin cycle). These electrons are essential for reducing carbon dioxide to produce sugars and other organic compounds. NADPH is produced during the light-dependent reactions of photosynthesis.