Organelles
Prokaryotic vs Eukaryotic
Diffusion & Osmosis
Homeostasis & Feedback Loop
Application
100

A cell has plenty of ribosomes but cannot export proteins outside the cell. What is malfunctioning?

Golgi Apparatus, they are responsible for exporting and shipping proteins. 

100

A cell contains DNA, ribosomes, and cytoplasm but no nucleus. Identify the cell type.

Prokaryotic

100

A cell is placed in a solution and gains mass. What type of solution is this?

Hypotonic

100

Body temperature rises → sweating begins. What type of feedback and why?

Negative feedback

100

A cell increases activity and requires more ATP. What adaptation might occur?

More mitochondria

200

A toxin blocks ATP production. Which organelle is directly affected?

Mitochondria, the produce energy by making ATP. 

200

Why can bacteria reproduce faster than human cells?

Simpler structure + binary fission

200

A red blood cell shrinks. Describe the environment.

Hypertonic

200

A process continues to intensify until a specific event occurs. Identify the feedback type.

Positive feedback

200

A plant cell becomes rigid after being placed in water. Explain.

Hypotonic → water enters → turgor pressure

300

A cell builds proteins but they are shaped incorrectly. Which organelle is most likely involved?

Rough ER, its role is to modify proteins. 

300

A drug targets membrane-bound organelles. Which cells are affected?

Eukaryotic cells

300

Explain why diffusion does not require energy.

Moves down concentration gradient

300

Why would uncontrolled positive feedback be dangerous in body temperature regulation?

Would keep increasing temperature

300

A cell in a salty environment loses water and stops functioning. What happened?

Hypertonic → dehydration

400

A cell cannot regulate internal balance and begins to swell uncontrollably. Which structure is failing first?

Cell membrane, makes sure to provide balance from what enters and exists the cell with selective permeable behavior. 

400

A scientist observes a large, complex cell with multiple chromosomes. What type is it and why?

Eukaryotic

400

A student claims water moves toward areas of high water concentration. Correct the statement.

Water moves toward higher solute concentration

400

Blood glucose rises, insulin lowers it. What system is being maintained?

Homeostasis

400

A failure in temperature regulation leads to overheating. Which system failed?

Homeostasis (negative feedback failure)

500

A cell loses its nucleus but still has functioning mitochondria. What happens over time?

The cell will eventually die, the mitochondria makes short-term energy but without the nucleus there are no instructions for how much protein should be produced. 

500

Explain why antibiotics can target bacteria without harming human cells.

Structural differences (prokaryotic vs eukaryotic)

500

A cell is placed in a solution where solute concentration is equal inside and outside, yet molecules still move. Explain.

Isotonic—dynamic equilibrium

500

Explain why negative feedback is essential for survival.

Maintains stable internal conditions

500

A cell cannot produce proteins, loses energy, and cannot maintain balance. Identify THREE structures involved.

  • Ribosomes (proteins)
  • Mitochondria (energy)
  • Cell membrane (balance)