AP®︎ Biology: Topic 2.2 Practice Test

Prepare for your quiz, test, or the AP exam with focused practice questions on Topic 2.2 of AP Biology – Cell Size.


Questions List

Topic 2.2

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Question 1 Easy

This question tests the following: SYI-1.E

What is the primary function of the rough endoplasmic reticulum?

AProtein synthesis and modification
BLipid synthesis and detoxification
CEnergy production through cellular respiration
DDNA replication and transcription

What You’re Being Tested On:

Explore the learning objectives taken directly from the College Board’s AP® Biology Curriculum. Ensure you’re prepared for the exact topics covered on the AP® exam, in-class tests, and quizzes, and gain confidence in your mastery of the material.

Topic 2.2: Cell Size

Learning Objective: 2.2.A

Explain the effect of surface area-to-volume ratios on the exchange of materials between cells or organisms and the environment.

Essential Knowledge: 2.2.A.1

Surface area-to-volume ratios affect the ability of a biological system to obtain necessary nutrients, eliminate waste products, acquire or dissipate thermal energy, and otherwise exchange chemicals and energy with the environment. Relevant equations: Volume of a Sphere: V = (4/3)πr^3. Volume of a Cube: V = s^3. Volume of a Rectangular Solid: V = lwh. Volume of a Cylinder: V = πr^2l. Surface Area of a Sphere: SA = 4πr^2. Surface Area of a Cube: SA = 6s^2. Surface Area of a Rectangular Solid: SA = 2lh + 2lw + 2wh. Surface Area of a Cylinder: SA = 2πr^2 + 2πrl. r = radius. l = length. h = height. w = width. s = length of one side of a cube. Illustrative examples: SA/V Ratios and Exchanges; Root hairs; Guard cells; Gut epithelial cells; Cilia; Stomata.

Essential Knowledge: 2.2.A.2

The surface area of the plasma membrane must be large enough to adequately exchange materials. i. The surface area-to-volume ratio can restrict cell size and shape. Smaller cells typically have a higher surface area-to-volume ratio as well as a more efficient exchange of materials with the environment than do larger cells. ii. As cells increase in volume, the surface area-to-volume ratio decreases and the demand for internal resources increases. iii. More complex cellular structures (e.g., membrane folds) are necessary to adequately exchange materials with the environment. iv. As organisms increase in size, their surface area-to-volume ratio decreases, affecting properties like rate of heat exchange with the environment. Smaller amounts of mass exchange proportionally more heat with the ambient environment than do larger masses. As mass increases, both the surface area- to-volume ratio and the rate of heat exchange decrease. v. There is a relationship between metabolic rate per unit body mass and the size of multicellular organisms; typically, the smaller the organism, the higher the metabolic rate per unit body mass.