Answer:
30 protein molecules per mRNA molecule
Explanation:
In this problem, it is necessary to have into account that the transcriptional process requires six (6) phosphate bonds to synthesize one (1) codon (i.e, each three nucleotides), and also discards 95% more energy to make mRNA, it means 19 times this amount of energy >> 6 x 19 = 114 bonds. In consequence, transcription requires 120 phosphate bonds (6 + 114 = 120), while translation requires four (4) phosphate bonds per codon. From this deduction, it is possible to find the number of protein molecules synthesized with regard to the energy cost of the translation process and the transcriptional process >>> 120 bonds (transcription) /4 bonds (translation) = 30 protein molecules.
Which two mineral samples would be most
difficult to distinguish from each other based on
their color, luster, and streak?
diamond
Talc is the softest and diamond is the hardest. Each mineral can scratch only those below it on the scale.
<span>A law is a theory that has explained a number of observed phenomena, and it has predicted a number of other phenomena which may as yet be unobserved.
In that sense, a law is a theory that has not yet been proven wrong or given rise to any contradictions.
A theory is just a theory until it has been proven true by experiments and observation</span>
Cellular respiration will affect the oxygen levels by decreasing it.
CELLULAR RESPIRATION:
- Cellular respiration is the process by which living organisms obtain energy (ATP) by breaking down food molecules in their cells.
- Cellular respiration can either occur aerobically (with oxygen) or anaerobically (without oxygen). Aerobic cellular respiration uses oxygen to break down glucose molecules to form carbon dioxide and water as follows:
C6H12O6 + 6O2 → 6CO2 + 6H2O
- Based on the equation above, oxygen is a reactant meaning that it is used up during the cellular respiration process. Therefore, oxygen levels will decrease due to cellular respiration.
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