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AP Biology:: Cell Structure Function

Created by Chat Robotics Community  ·  Updated 2026-09-08

Curriculum Overview

Comprehensive, high-yield AP Biology study deck focusing on Cell Structure Function. Features 50 rigorous, curriculum-aligned flashcards designed for intermediate-level mastery. Core concepts covered include Cell Structure Function, key problem-solving heuristics, foundational formulas, and exam-tested application scenarios. Ideal for active recall review, spaced repetition study, and scoring in the top percentile.

Topics & Key Concepts

CELL Cell INTO This LOWER Water ANIMAL HIGHER Biology Diffusion

Sample Flashcard Questions & Answers

Showing 8 of 50 cards
Question #1 Active Recall

What is CELL THEORY, one of the foundational principles of biology?

- **A)** A theory describing only the structure of plant cells, with no application to animal cells
- **B)** The idea that only some living organisms are made of cells, while others are not composed of cells at all
- **C)** The idea that ALL living organisms are composed of one or more cells, the cell is the basic unit of structure/function in organisms, and all cells arise from PRE-EXISTING cells
- **D)** Cell theory states that cells can spontaneously generate from non-living matter with no need for a pre-existing cell

Answer & Explanation:
**Answer: C)**

Cell theory establishes the cell as the fundamental unit of life, and importantly, that new cells only arise from cells that already exist -- not from spontaneous generation.
Question #2 Active Recall

What is the fundamental difference between a PROKARYOTIC cell and a EUKARYOTIC cell?

- **A)** A eukaryotic cell always lacks a nucleus, while a prokaryotic cell always has one (the reverse of the truth)
- **B)** A prokaryotic cell LACKS a membrane-bound NUCLEUS (and generally lacks other membrane-bound organelles), while a eukaryotic cell HAS a true, membrane-bound nucleus (and typically other membrane-bound organelles)
- **C)** Prokaryotic cells are always significantly LARGER than eukaryotic cells
- **D)** Prokaryotic and eukaryotic cells are always exactly identical in every structural respect

Answer & Explanation:
**Answer: B)**

The presence or absence of a true, membrane-bound nucleus is the single most fundamental distinguishing feature between these two cell types.
Question #3 Active Recall

What is the CELL MEMBRANE (plasma membrane)'s primary function?

- **A)** The cell membrane's only function is providing rigid structural support, identical to a plant cell wall
- **B)** Forming a SELECTIVELY PERMEABLE barrier that separates the cell's internal contents from its external environment, while regulating what substances enter or exit the cell
- **C)** The cell membrane completely prevents ANY substance from ever entering or exiting the cell
- **D)** The cell membrane's function is unrelated to controlling what enters or exits a cell

Answer & Explanation:
**Answer: B)**

The cell membrane's SELECTIVE permeability (letting some substances through while restricting others) is central to maintaining a cell's stable internal environment.
Question #4 Active Recall

What does the FLUID MOSAIC MODEL describe about the structure of the cell membrane?

- **A)** The fluid mosaic model describes the membrane as containing no proteins at all, only phospholipids
- **B)** The membrane consists of a phospholipid bilayer with various PROTEINS and other molecules EMBEDDED within it, and both the phospholipids and many proteins can move somewhat FREELY within the membrane's plane, giving it a fluid, dynamic quality rather than a rigid, fixed structure
- **C)** This model applies only to plant cell walls, never to cell membranes
- **D)** The cell membrane is a completely RIGID, unmoving structure with no fluidity whatsoever

Answer & Explanation:
**Answer: B)**

The 'fluid' part of the name reflects the membrane's dynamic, somewhat mobile nature, while 'mosaic' reflects the diverse mix of proteins and other molecules embedded throughout it.
Question #5 Active Recall

What is the difference between INTEGRAL (transmembrane) membrane proteins and PERIPHERAL membrane proteins?

- **A)** Only peripheral proteins are ever found in a real cell membrane; integral proteins do not actually exist
- **B)** Integral and peripheral proteins are always exactly identical in their location and structure
- **C)** Peripheral proteins always span completely through the membrane, while integral proteins never do (the reverse of the truth)
- **D)** INTEGRAL proteins are embedded WITHIN (often spanning all the way through) the membrane, while PERIPHERAL proteins are attached to the membrane's SURFACE without actually being embedded inside it

Answer & Explanation:
**Answer: D)**

This location-based distinction (embedded-within vs. attached-to-surface) is the key difference between these two categories of membrane proteins.
Question #6 Active Recall

What is PASSIVE TRANSPORT across a cell membrane, and why is it called 'passive'?

- **A)** This term describes a process that never actually moves any substance across a membrane
- **B)** Movement of substances ACROSS the membrane WITHOUT requiring the cell to expend energy (ATP), typically moving substances DOWN their concentration gradient (from higher to lower concentration)
- **C)** Passive transport always moves substances AGAINST their concentration gradient, from low to high concentration
- **D)** Passive transport always REQUIRES the cell to actively expend energy (ATP) to move substances

Answer & Explanation:
**Answer: B)**

The 'passive' in passive transport refers to NOT requiring cellular energy -- substances simply move along their natural concentration gradient.
Question #7 Active Recall

What is DIFFUSION, as a specific type of passive transport?

- **A)** Diffusion always moves particles from LOW to HIGH concentration, requiring active energy input
- **B)** Diffusion can only ever occur across a cell membrane, never in open space
- **C)** A synonym for active transport
- **D)** The net movement of particles from an area of HIGHER concentration to an area of LOWER concentration, occurring spontaneously due to random particle motion, without requiring any cellular energy

Answer & Explanation:
**Answer: D)**

Diffusion is the most basic form of passive transport, driven simply by random molecular motion tending to even out concentration differences over time.
Question #8 Active Recall

What is OSMOSIS, specifically?

- **A)** The diffusion of any solute EXCEPT water across a membrane
- **B)** A synonym for active transport requiring ATP
- **C)** Osmosis refers only to the movement of proteins across a membrane
- **D)** The diffusion of WATER specifically, across a selectively permeable membrane, from an area of HIGHER water concentration (lower solute concentration) to an area of LOWER water concentration (higher solute concentration)

Answer & Explanation:
**Answer: D)**

Osmosis is specifically water's diffusion, driven by differences in solute concentration on either side of a selectively permeable membrane.

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