This process occurs in plants during photosynthesis. During photosynthesis, oxygen is produced during a light dependent cycle while carbon is assimilated during a dark cycle.
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The carbon and oxygen cycle are related by complementary relationship. For example whenever animals and humans breath they breath in oxygen and breath out carbon. Another example is plant and trees tack in carbon for nutrients and releases oxygen.
The lungs of a human and the chloroplast of a greenhouse plant are both involved in the process of photosynthesis. In photosynthesis, plants take in carbon dioxide and produce oxygen, while humans take in oxygen and release carbon dioxide. This interdependent relationship helps maintain the balance of gases in the Earth's atmosphere.
Photosynthesis is a process where plants and some other organisms convert light energy into chemical energy to produce glucose and oxygen, while respiration is a process where organisms break down glucose to produce energy for cellular activities and release carbon dioxide and water as byproducts. The relationship between the two processes is that they are interconnected in the ecosystem - photosynthesis produces the oxygen needed for respiration, and respiration produces the carbon dioxide needed for photosynthesis.
The dark reactions of photosynthesis were discovered by Melvin Calvin and his colleagues in the 1950s. Calvin received the Nobel Prize in Chemistry in 1961 for his work on the pathway of carbon dioxide assimilation in plants.
Plants contribute to the production of carbon dioxide in the environment through a process called respiration. During respiration, plants take in oxygen and release carbon dioxide as a byproduct. This natural process occurs both during the day and night, but is more prominent at night when photosynthesis is not taking place.
The relationship between carbon dioxide concentration and glucose concentration is primarily observed during photosynthesis in plants. As carbon dioxide concentration increases, photosynthesis rates typically rise, leading to higher glucose production, assuming other factors like light and water are sufficient. Conversely, in the absence of adequate carbon dioxide, glucose production can be limited. Thus, there is a direct correlation between the two, where increased carbon dioxide can enhance glucose synthesis.
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Steel is an alloy made by combining iron with carbon. The amount of carbon added to iron determines the properties of the resulting steel alloy, such as hardness and strength. Carbon content can vary from very low in mild steel to higher levels in high-carbon steel.
The relationship between the rise of ocean temperatures and the rise in the level of atmospheric carbon dioxide is that when there is a rise in atmospheric carbon dioxide the warmer the temperature of the ocean is
The first living creatures consisted of individual carbon atoms
The shorter the carbon-carbon double bond length, the greater the stability of the molecule.
Any relation exist.
Primary production is the synthesis of organic compounds by autotrophic organisms using light or chemical energy. It can be measured using techniques like oxygen production, carbon assimilation, or biomass accumulation over time. These methods help quantify the rate at which energy is converted into organic matter by plants and other photosynthetic organisms.
The relationship between carbon content and hardness in metals, particularly in steel, is generally direct: as carbon content increases, hardness tends to increase. This is because carbon atoms help to form harder microstructures, such as martensite, during heat treatment processes. However, excessive carbon can lead to brittleness, which may compromise toughness. Thus, there is a balance between achieving hardness and maintaining ductility.
Co2 is a raw material. it is using for make carbohydrates.
Increasing concentration of carbon dioxide in the atmosphere is considered a factor that increase the global warming.
The carbon and oxygen cycle are related by complementary relationship. For example whenever animals and humans breath they breath in oxygen and breath out carbon. Another example is plant and trees tack in carbon for nutrients and releases oxygen.