Basic Chemistry & Bonding
Macromolecules
Biochemical Reactions & Enzymes
Cell Biology
Membrane Transport
100

Define an isotope and explain how it differs from a radioactive isotope

Isotopes have the same number of protons but different numbers of neutrons. Radioactive isotopes are unstable and emit radiation.

100

Name the monomer of proteins.

Amino acids.

100

Differentiate dehydration synthesis and hydrolysis.

Dehydration removes water to build larger molecules; hydrolysis adds water to break them apart.

100

Which organelle is called the 'post office' of the cell?

Golgi apparatus

100

Differentiate passive and active transport.

Passive transport requires no ATP and moves down the gradient; active transport requires ATP and moves against the gradient.

200

Explain the difference between ionic and covalent bonds.

Ionic bonds involve electron transfer; covalent bonds involve sharing electrons.

200

Compare saturated and unsaturated fats.

Saturated fats have no double bonds and are usually solid; unsaturated fats contain double bonds, have kinks, and are usually liquid.

200

The pH is logarithmic, meaning each unit represents a 10-fold change in H+ concentration.

Calculate: A solution changes from pH 7 to pH 4. By what factor has the H+ concentration increased?

1000 times.

200

Place these in order: Nucleus, Rough ER, Golgi, Vesicle, Cell membrane.

Nucleus → Rough ER → Golgi → Vesicle → Cell membrane

200

Why can small non-polar molecules diffuse directly through the membrane?

They dissolve in the hydrophobic lipid bilayer.

300

Water is a polar molecule. Explain why.

Oxygen is more electronegative than hydrogen and the bent shape creates unequal charge distribution.

300

Complete the chart: (bond type)

Carbohydrates–____; 

Lipids–____; 

Proteins–____; 

Nucleic acids–____ .

Carbohydrates–___Glycosidic_; 

Lipids–__Ester__; 

Proteins–__Peptide__; 

Nucleic acids–__Phosphodiester__ .

300

What is the role of buffers in the human body?

They resist sudden changes in pH and maintain homeostasis.

300

Explain why phospholipids naturally form a bilayer.

Hydrophilic heads face water; hydrophobic tails avoid water.

300

Compare channel proteins and carrier proteins.

Channels form pores; carriers change shape during transport.

400

Explain how the electron arrangement in carbon atoms enables them to form straight chains, branched chains, and rings.

Carbon has four valence electrons, allowing it to form four stable covalent bonds with many atoms, including other carbon atoms.

400

Explain why humans can digest starch but not cellulose.

Starch contains α-glucose linkages; cellulose contains β-glucose linkages that humans cannot digest.

400

Describe the induced-fit model.

The enzyme changes shape slightly as the substrate binds, improving catalysis.

400

Name three factors that affect membrane fluidity.

Temperature, cholesterol, and degree of fatty acid saturation.

400

Predict what happens to an animal cell in a hypertonic solution and explain why.

Water leaves by osmosis, causing the cell to shrink.

500

Describe two properties of water caused by hydrogen bonding and explain why each is important.

cohesion, adhesion, high specific heat, high heat of vaporization, universal solvent, ice floats.

500

State three structural differences between DNA and RNA.

Deoxyribose vs ribose; 

Thymine vs uracil; 

double-stranded vs single-stranded.

500

Compare competitive and non-competitive inhibition.

Competitive inhibitors bind the active site; non-competitive inhibitors bind an allosteric site and alter enzyme shape.

500

Describe how at least four organelles work together to produce and secrete a protein.

Nucleus → Rough ER/ribosomes → Golgi → Vesicle → Cell membrane

500

Describe how the sodium-potassium pump works.

Uses 1 ATP to move 3 Na+ out and 2 K+ into the cell.