Answer:
the formation of a plow pana buildup of salt in the soil to the point where it negatively affects plant growth
Explanation:
Overirrigation in dry areas primarily results in a buildup of salt in the soil, also known as soil salinization, which can negatively impact plant growth.
Overirrigation in dry areas can primarily cause the buildup of salt in the soil, also known as soil salinization. This occurs as a result of the evaporation of irrigation water, which leaves behind residual salts that are not sufficiently flushed away by rainfall in dry areas. Over time, these salts accumulate and can reach levels that are harmful to the plant growth.
While it's true that overirrigation might cause other problems like high relative humidity that may indirectly impact plant health, or the potential for minor localized issues, the key problem specifically linked with overirrigation in dry areas is the buildup of salt in the soil.
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B. It is what happens in cellular respiration
C. It is an endergonic reaction
C. It is an endergonic reaction.
Endergonic v/s Exergonic:
Therefore, the statement which is NOT true for a reaction that breaks a bond is option C.
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Answer:
C
Explanation:
Endergonic reactions use energy to build bonds
Exergonic reactions release energy through breaking bonds
Depending on the type of cell, there are two ways cells divide—mitosis and meiosis. Each of these methods of cell division has special characteristics. One of the key differences in mitosis is a single cell divides into two cells that are replicas of each other and have the same number of chromosomes. This type of cell division is good for basic growth, repair, and maintenance. In meiosis a cell divides into two cells that have half the number of chromosomes. Reducing the number of chromosomes by half is important for sexual reproduction and provides for genetic diversity.