The universal hydrogen acceptor is ‘
NAD (Nicotinamide adenine dinucleotide) is a universal hydrogen acceptor. It plays a crucial role in cellular respiration and metabolic processes by accepting electrons and hydrogen ions to form NADH.
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The universal hydrogen acceptor is ‘
NAD (Nicotinamide adenine dinucleotide) is a universal hydrogen acceptor. It plays a crucial role in cellular respiration and metabolic processes by accepting electrons and hydrogen ions to form NADH.
In plants energy is produced during the process of (CPMT 1981)
In plants, energy is primarily produced during the process of respiration. During respiration, glucose is broken down with the help of oxygen to release energy in the form of ATP.
In respiration pyruvic acid is (MPPMT. 1986, 1988)
During respiration, pyruvic acid is broken down into a two-carbon fragment (Acetyl-CoA) and carbon dioxide (CO2). This process is a part of the link reaction or transition stage before entering the Krebs cycle.
Maximum number of ATP is synthcsised during oxidation of (R.PM.T. 1990)
Palmitic acid, a type of fatty acid, undergoes beta-oxidation which produces a significant amount of ATP. During the complete oxidation of one molecule of palmitic acid, a total of 129 ATP molecules can be synthesized. This is higher compared to glucose and other mentioned options.
NADP+ is reduced to NADPH in
NADP+ is reduced to NADPH in the Hexose Monophosphate Pathway (HMP), also known as the Pentose Phosphate Pathway. This pathway is crucial for producing NADPH, which is essential for biosynthetic reactions and for maintaining the reducing environment of the cell.
Which of the following is the source of respiration (C.P.M.T 1979)
Stored food is the source of respiration. During cellular respiration, stored food substances such as carbohydrates, fats, and proteins are broken down to produce ATP, which is the energy currency of the cell.
Raw material of respiration is (R.R.M.T. 199)
The raw materials for respiration are glucose and oxygen (O2). During cellular respiration, glucose ( ext{C}6 ext{H}{12} ext{O}_6) is broken down in the presence of oxygen to produce carbon dioxide ( ext{CO}_2), water ( ext{H}_2 ext{O}), and energy (ATP). The balanced chemical equation for this process is: \[ ext{C}_6 ext{H}_{12} ext{O}_6 + 6 ext{O}_2 ightarrow 6 ext{CO}_2 + 6 ext{H}_2 ext{O} + ext{energy (ATP)} \] Thus, glucose and oxygen are the raw materials for respiration.
Respiration is found in (B.H.V. 1980)
Respiration is a fundamental process that occurs in all living cells to generate energy. It takes place both in the presence of light and in the dark. Unlike photosynthesis, which occurs only in the presence of light and primarily in green cells, respiration occurs in all types of cells (both green and non-green) and does not depend on light. Thus, respiration is found in all living cells both in light and dark.
Anaerobic respiration is
Anaerobic respiration is a type of respiration that occurs without the presence of oxygen. It is called intra-molecular respiration because the organic substrate (such as glucose) is partially oxidized within the cell to produce energy. This process usually results in the formation of lactic acid or ethanol and carbon dioxide as end products. In contrast to aerobic respiration, which completely oxidizes glucose to produce more energy, anaerobic respiration yields less energy.
Total gain of energy in anaerobic respiration from one glucose molecule is (CPMT. 1987)
In anaerobic respiration, glycolysis is the primary pathway that occurs, which results in a net gain of 2 ATP molecules per glucose molecule. Therefore, the total gain of energy in anaerobic respiration from one glucose molecule is two ATP.
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