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BIO 250 Exam 2 V3 | BIO 250 Microbiology | Actual Q&A with Rationale (BIO250 Exam 2) | StraighterLine

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BIO 250 Exam 2 V3 | BIO 250 Microbiology | Actual Q&A with Rationale (BIO250 Exam 2) | StraighterLine

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BIO 250 Exam 2 V3 | BIO 250 Microbiology
| Actual Q&A with Rationale (BIO250 Exam
2) | StraighterLine
1. Which of the following environmental factors can influence the rate and success of

microbial growth? (Select All That Apply)

A. Temperature levels


B. pH concentrations


C. Osmotic pressure and salinity


D. Availability of atmospheric gases such as oxygen


E. All of the above are factors that influence growth.


F. Hydrostatic/Barometric pressure


Answer: E


Rationale: Microorganisms are highly sensitive to their physical and chemical

environment, which dictates their metabolic efficiency. Temperature affects enzyme

activity and membrane fluidity, while pH impacts the ionization of proteins. In this context,

all listed factors including osmotic pressure and gas availability are critical determinants of

microbial ecology.


2. The specific molecule upon which an enzyme acts is known as the:

A. Apoenzyme

,B. Substrate


C. Cofactor


D. Product


Answer: B


Rationale: Enzymes function by lowering the activation energy required for a chemical

reaction to occur. The substrate binds to the enzyme’s active site, forming an enzyme-

substrate complex. This interaction is highly specific, often described by the lock-and-key

or induced fit models.


3. During the process of DNA replication, which enzyme is responsible for unzipping the

parent DNA molecule?

A. DNA Polymerase III


B. Primase


C. Helicase


D. Ligase


Answer: C


Rationale: Helicase utilizes energy from ATP hydrolysis to break the hydrogen bonds

between complementary nitrogenous bases. This action creates the replication fork,

allowing other enzymes to access the single strands. Without helicase activity, the double

helix would remain closed and replication could not initiate.

, 4. In aerobic respiration, the majority of ATP is produced during which phase?

A. Glycolysis


B. The Krebs Cycle


C. Fermentation


D. The Electron Transport Chain and Chemiosmosis


Answer: D


Rationale: While glycolysis and the Krebs cycle generate some ATP via substrate-level

phosphorylation, the bulk of cellular energy is produced at the inner mitochondrial

membrane or bacterial plasma membrane. The electron transport chain creates a proton

motive force that drives ATP synthase. This process, known as oxidative phosphorylation,

yields significantly more ATP per glucose molecule than other stages.


5. Which of the following is an example of a purine nitrogenous base?

A. Adenine


B. Cytosine


C. Thymine


D. Uracil


Answer: A

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