Answer:
Photosynthesis remove the carbon dioxide from atmosphere and release oxygen while cellular respiration release the carbon dioxide in atmosphere and consume oxygen.
Explanation:
Photosynthesis:
It is the process in which in the presence of sun light and chlorophyll by using carbon dioxide and water plants produce the oxygen and glucose.
Carbon dioxide + water + energy → glucose + oxygen
water is supplied through the roots, carbon dioxide collected through stomata and sun light is capture by chloroplast.
Chemical equation:
6H₂O + 6CO₂ + energy → C₆H₁₂O₆ + 6O₂
Cellular respiration:
It is the breakdown of glucose molecule in the presence of oxygen to yield large amount of energy. Water and carbon dioxide are also produced as a byproduct.
Glucose + oxygen → carbon dioxide + water + 38ATP
it is the reverse of photosynthesis.
There are two types of respiration:
1. Aerobic respiration
2. Anaerobic respiration
The Anaerobic respiration occur in the absence of oxygen.
The phenotype of the F1 generation offsprings will be black. They will be heterozygous in nature.
<h3><u>Explanation:</u></h3>
The genes for the fur colour in horses are completely dominant and the dominant colour is black and is represented by B. The recessive colour is chestnut and is represented by t.
The genotype of the homozygous black horse is BB. and the genotype of the homozygous chestnut coloured parent is tt.
The gametes from the black parent =B.
The gametes from the chestnut parent = t.
So the genotype of the F1 offspring = Bt.
It is a heterozygous black horse because the black gene is completely dominant over chestnut gene.
Flowers are essential for sexual, not asexual, plant reproduction. Flowers have co-evolved with pollinators so as to attract them from one plant;s sexual apparati to another's, thereby transporting plant male reproductive cells (gametes) from one plant to another.
Answer: I belive it would be earthquake because earthquakes are caused but 2 tectonic plates shifting
Explanation:
Hope this helps if not sorry :(
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Carbon dioxide is transported in the blood in three ways: 1) dissolved in solution 2) bound to proteins 3) buffered with water