
AP Prep
Last updated: April 2026 | Based on the AP Biology Course and Exam Description
If you have two weeks before the AP Biology exam, you don't need to relearn everything from scratch. You need to study in the shape of the exam: broad coverage across all eight units, active recall of the most testable concepts, and timed practice with multiple-choice questions and free-response questions that test data interpretation, experimental design, and graphing skills.
Here's the thing most students get wrong. They spend too long memorizing vocabulary and not enough time practicing the skills the exam actually tests. AP Biology rewards you for understanding how to read data, design experiments, and connect concepts across units. You can't afford to skip that.
The AP Biology exam is 3 hours long. It has two sections:
Section 1: Multiple Choice — 60 questions in 90 minutes. All eight units are tested. Questions focus on core concepts and often require connecting ideas between units.
Section 2: Free Response — 6 questions in 90 minutes. Two long free-response questions worth 8-10 points each (usually about experimental design or data interpretation). Four short free-response questions worth 4 points each. FRQs test your ability to interpret graphs, design experiments, apply the Hardy-Weinberg equation, perform chi-square analysis, and defend biological claims with evidence.
Both question types matter. A lot of students focus only on multiple-choice and then freeze when they see a data set or experimental scenario. This plan builds in FRQ practice starting in the first week so you're not scrambling at the end.
The AP Biology course is organized into eight units. Here's what you need to know about each one and where to focus your review time.
This unit covers the chemical foundations of life. It's foundational but not heavily weighted. Focus on the big molecules, not exhaustive biochemistry.
What to focus on:
This unit is about cell structure and the connection between structure and function. You need to know what each organelle does and why it matters for cell survival.
What to focus on:
This is a heavy unit. It covers how cells harvest energy from organic molecules. You'll see multiple FRQs testing your understanding of glycolysis, cellular respiration, photosynthesis, and the connection between them.
What to focus on:
This unit ties together how cells communicate with each other and themselves through signaling molecules and receptors. You'll also need to understand mitosis, meiosis, and how the cell cycle is regulated.
What to focus on:
Here is a full lecture from the StarSpark platform covering exactly this unit — cell growth, DNA replication, and mitosis. It is an example of the interactive, guided lessons you work through inside StarSpark, where you can pause, ask questions, and practice as you go.
This is where Mendelian genetics matters. You need to be comfortable with dominant and recessive traits, pedigrees, and basic genetic crosses.
What to focus on:
This is another heavy unit. It covers how genes are expressed at the molecular level and how that expression is regulated. Expect FRQs on transcription, translation, and gene regulation.
What to focus on:
This is the heaviest unit. It covers evolution, natural selection, and population genetics. You need to be comfortable with the Hardy-Weinberg equation and understanding how allele frequencies change over time.
What to focus on:
This unit covers interactions between organisms and their environment. It's broad but testable.
What to focus on:
The approach is simple. Each day:
Two more things that matter:
Don't skip the FRQ practice. This plan includes FRQ prompts on Days 6, 9, 12, and 14. AP Biology FRQs are different from other AP exams. They test your ability to interpret data, design experiments, and apply quantitative reasoning. You need practice seeing real data sets and explaining what they mean.
Do mixed quizzes on Days 7, 10, and 14. These are cumulative on purpose. Mixing topics forces your brain to categorize concepts, which is exactly what the AP exam asks you to do.
| Day | Topic | Key Concepts | Flashcard Prompt | Quiz Prompt |
|---|---|---|---|---|
| 1 | Unit 1: Chemistry of Life | Atomic structure, chemical bonds, water properties, carbohydrates, lipids, proteins, nucleic acids | Create 18 AP Biology flashcards on Unit 1. Cover atomic structure, types of chemical bonds, water properties, macromolecule structures, and monomer vs. polymer relationships. | Create a 10-question AP Biology quiz on Unit 1. Include questions about chemical properties, macromolecule identification, enzyme function, and structure-function relationships. |
| 2 | Unit 1-2: Chemistry and Cell Structure | Enzymes and regulation, prokaryotic vs. eukaryotic cells, organelle functions, cell membrane | Create 22 AP Biology flashcards on Unit 1 enzymes and Unit 2 cell structure. Cover enzyme activity, cell type differences, and how structure enables function. | Create a 12-question AP Biology quiz combining Unit 1 and 2. Use scenario-based questions about enzyme activity, organelle dysfunction, and cell structure. |
| 3 | Unit 2: Cell Membranes and Transport | Phospholipid bilayer, selective permeability, diffusion, osmosis, active transport, bulk transport | Create 20 AP Biology flashcards on cell membranes and transport. Focus on membrane structure, transport mechanisms, osmosis vocabulary, and transport proteins. | Create a 12-question AP Biology quiz on cell membranes. Use scenarios about cellular environments and ask which transport would occur. |
| 4 | Unit 2: Cell Cycle and Regulation | Cell cycle phases, mitosis stages, cytokinesis, checkpoints, cancer | Create 18 AP Biology flashcards on the cell cycle. Cover phases, mitotic stages, chromosomal behavior, cytokinesis, and cycle regulation by cyclins and CDKs. | Create a 10-question AP Biology quiz on the cell cycle. Include phase identification, chromosome number changes, and checkpoint failure. |
| 5 | Unit 3: Cellular Respiration Part 1 | ATP and energy, glycolysis, pyruvate oxidation, citric acid cycle | Create 25 AP Biology flashcards on glycolysis and the citric acid cycle. Cover ATP, inputs and outputs, NADH and FADH2 roles, and step-by-step pathways. | Create a 14-question AP Biology quiz on glycolysis and the citric acid cycle. Use scenarios about glucose breakdown and ATP production. |
| 6 | Unit 3: Respiration Part 2 and Photosynthesis Part 1 + FRQ | Electron transport, chemiosmosis, ATP synthase, light reactions | Create 24 AP Biology flashcards on electron transport, chemiosmosis, and photosynthesis light reactions. Cover ATP synthase and photosystems. | Create a 12-question AP Biology quiz on cellular respiration and light reactions. Then create 1 short FRQ (4 points) with an oxygen consumption graph asking for interpretation. |
| 7 | Unit 3-4: Photosynthesis and Cell Communication + Cumulative | Calvin cycle, comparing photosynthesis and respiration, signal transduction | Create 20 AP Biology flashcards on Calvin cycle and signal transduction. Cover reactants, products, and cell signaling steps. | Create a 12-question mixed quiz on cellular energetics. Then create a 6-question cumulative quiz from Units 1-2 to keep earlier material fresh. |
| 8 | Unit 4: Cell Cycle and Meiosis Part 1 | Mitosis vs. meiosis, meiosis I, independent assortment, crossing over | Create 22 AP Biology flashcards on cell cycle and meiosis. Cover mitosis vs. meiosis differences, meiotic stages, and crossing over purpose. | Create a 14-question AP Biology quiz on meiosis. Use diagram-based scenarios asking for stage identification and chromosome predictions. |
| 9 | Unit 4-5: Meiosis II and Heredity Part 1 + FRQ | Meiosis regulation, sexual reproduction, Mendelian inheritance | Create 20 AP Biology flashcards on meiosis completion and Mendelian inheritance. Cover meiosis regulation, dominance, and genotype vs. phenotype. | Create a 10-question AP Biology quiz on meiosis and basic genetics. Then create 1 short FRQ (4 points) showing a pedigree and asking for genotype determination. |
| 10 | Unit 5: Heredity Part 2 + Cumulative Check | Pedigree analysis, monohybrid and dihybrid crosses, sex-linked traits | Create 22 AP Biology flashcards on Punnett squares, pedigrees, and inheritance patterns. Include incomplete dominance and codominance. | Create a 10-question AP Biology quiz on heredity. Then create a 6-question cumulative quiz from Units 1-4 connecting cell division to genetic variation. |
| 11 | Unit 6: Gene Expression Part 1 | DNA replication, transcription, RNA processing, translation prep | Create 25 AP Biology flashcards on DNA replication and transcription. Cover base pairing, directionality, and RNA processing (cap, tail, splicing). | Create a 15-question AP Biology quiz on replication and transcription. Use scenario-based questions about DNA damage and transcription factors. |
| 12 | Unit 6: Translation and Mutations + FRQ | Translation, genetic code, mutations, protein synthesis | Create 22 AP Biology flashcards on translation and mutations. Cover codons, anticodons, tRNA, and mutation types (point, frameshift, silent, missense). | Create a 12-question AP Biology quiz on translation. Then create 1 longer FRQ (8 points) with a DNA sequence, asking students to transcribe, translate, and predict mutation effects. |
| 13 | Unit 6-7: Gene Regulation and Hardy-Weinberg | Gene regulation, operons, Hardy-Weinberg equation and equilibrium | Create 20 AP Biology flashcards on operons, transcription factors, and Hardy-Weinberg. Include the equation (p + q = 1 and p + 2pq + q = 1). | Create a 12-question AP Biology quiz on gene regulation and Hardy-Weinberg. Include a question where students calculate allele frequencies and assess equilibrium. |
| 14 | Unit 7-8: Natural Selection and Ecology + Full Review + FRQ | Evolution evidence, natural selection, population ecology, community ecology | Create 18 AP Biology flashcards on evolution, selection types, speciation, population growth, and community interactions. | Create a 15-question cumulative AP Biology quiz covering Units 5-8. Then create 1 longer FRQ (8 points) with population data showing allele frequency changes, asking for selection type and Hardy-Weinberg analysis. |
On the night before the exam, stop learning new material. Instead, flip through your StarSpark flashcards one more time, focusing on the ones you've been getting wrong. Make sure you can quickly recall the Hardy-Weinberg equation and the major steps of cellular respiration and photosynthesis. Read through the AP Biology Exam page on AP Central for any last-minute details about format and timing.
On exam morning, eat breakfast, bring your pencils and graphing calculator, and trust your preparation. Two weeks of active recall, FRQ practice, and data interpretation is more effective than two months of passive rereading.
Retrieval practice is more effective than rereading. Every flashcard prompt and quiz prompt in this plan forces you to pull information out of your memory, which strengthens your understanding.
Spaced repetition beats cramming. The cumulative checkpoints on Days 7, 10, and 14 bring back earlier material so it doesn't fade.
Interleaving improves transfer. Mixing topics in later quizzes forces your brain to recognize which unit a concept belongs to and how it connects to others, which is exactly what AP Biology asks you to do.
Active application prepares you for scenario and FRQ questions. The quiz prompts are designed to generate AP-style questions about data interpretation and experimental reasoning, not just vocabulary.
Mathematical thinking matters. This plan includes repeated practice with the Hardy-Weinberg equation and chi-square analysis so you're comfortable with quantitative reasoning on the exam.
You don't have to wait until tomorrow to start. Open StarSpark, paste the Day 1 flashcard prompt, and start quizzing yourself in under a minute.
The AP Biology exam rewards students who study smart, not just students who study long. Two weeks is enough if every study session is focused, active, and built around how your brain actually learns and how this exam actually tests you.
Good luck. You've got this.
This study plan is aligned with the AP Biology Course and Exam Description published by the College Board. AP is a registered trademark of the College Board, which was not involved in the production of this guide.
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