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BIO 250 Exam 2 V2 | BIO 250 Microbiology | Actual Q&A with Rationale (BIO250 Exam 2) | StraighterLine

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BIO 250 Exam 2 V2 | BIO 250 Microbiology | Actual Q&A with Rationale (BIO250 Exam 2) | StraighterLine

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BIO 250 Exam 2 V2 | BIO 250 Microbiology
| Actual Q&A with Rationale (BIO250 Exam
2) | StraighterLine
1. Which of the following describes the primary function of enzymes in microbial

metabolism?

A. To increase the activation energy of a chemical reaction.


B. To lower the activation energy required for a chemical reaction to occur.


C. To serve as a source of energy for endergonic reactions.


D. To permanently bind to substrates and become part of the product.


Answer: B


Rationale: Enzymes act as biological catalysts that significantly speed up the rate of

chemical reactions by lowering the activation energy barrier. They are typically composed

of proteins and are highly specific to their substrates due to the unique shape of their active

sites. Furthermore, enzymes are not consumed or permanently altered during the reactions

they catalyze, allowing them to be reused multiple times.


2. Which of the following elements are considered macronutrients required by all

microorganisms for growth and metabolism? (Select all that apply)

A. Carbon


B. Nitrogen

,C. Phosphorus


D. Zinc


E. Sulfur


F. Manganese


Answer: A, B, C, E


Rationale: Macronutrients are required by microorganisms in relatively large quantities

because they play essential roles in cell structure and metabolic processes. The key

macronutrients include carbon, hydrogen, oxygen, nitrogen, phosphorus, and sulfur, often

remembered by the acronym CHONPS. Trace elements like zinc and manganese are

micronutrients that are needed only in very small amounts for enzyme function and

protein stability.


3. In the process of glycolysis, what is the net gain of ATP molecules produced per molecule of

glucose via substrate-level phosphorylation?

A. 2 ATP


B. 1 ATP


C. 4 ATP


D. 38 ATP


Answer: A

,Rationale: During glycolysis, a single molecule of glucose is broken down into two

molecules of pyruvate through a series of enzymatic steps. While four ATP molecules are

actually produced during the payoff phase, two ATP molecules are consumed during the

energy investment phase. Therefore, the net energy yield for the cell is two ATP molecules

and two NADH molecules per glucose.


4. Which of the following is the final electron acceptor in aerobic cellular respiration?

A. Nitrate


B. Pyruvate


C. Molecular Oxygen (O2)


D. Sulfate


Answer: C


Rationale: Aerobic respiration concludes at the electron transport chain where electrons

are transferred to a final inorganic electron acceptor. In aerobic organisms, this final

acceptor is molecular oxygen, which is subsequently reduced to form water. This process

allows for the maximum theoretical yield of ATP compared to anaerobic pathways or

fermentation.


5. In a bacterial growth curve, which phase is characterized by a period of maximum growth

rate and intense metabolic activity?

A. Lag phase


B. Log (Exponential) phase

, C. Stationary phase


D. Death phase


Answer: B


Rationale: The log phase, or exponential growth phase, is the interval during which cells

are dividing at their maximum rate under the given environmental conditions. During this

stage, the population doubles at regular intervals (generation time), and the cells are most

metabolically active. This phase is also when bacteria are most sensitive to adverse

conditions, such as the action of certain antibiotics like penicillin.


6. A molecule that loses an electron during a chemical reaction is said to be:

A. Oxidized


B. Reduced


C. Phosphorylated


D. Hydrogenated


Answer: A


Rationale: Oxidation-reduction (redox) reactions involve the transfer of electrons from

one reactant to another. Oxidation is defined as the loss of one or more electrons, while

reduction is the gain of electrons. These reactions are always coupled in biological systems

to manage energy transfer within metabolic pathways.

Información del documento

Subido en
18 de julio de 2026
Número de páginas
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Escrito en
2025/2026
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