AP® Physics 2: Algebra-Based Practice Test
Exam Format & Components
Section I: Multiple Choice
40 Questions | 1hr 20mins | 50% of Score
This section assesses your understanding of advanced physics concepts through various types of questions, both discrete and in sets. The questions are designed around stimuli such as diagrams, data sets, or conceptual scenarios, challenging you to:
- Concept Application: Apply physical principles to solve problems in areas such as fluid mechanics, thermodynamics, electricity, and magnetism.
- Data Analysis: Interpret complex data from graphs, charts, and tables, using it to make informed decisions and calculations.
- Theoretical Understanding: Demonstrate a thorough grasp of physics concepts by analyzing scenarios and answering related questions.
- Problem-Solving: Employ algebra-based solutions to tackle real-world physics challenges, reflecting an understanding of both conceptual and practical aspects of the curriculum.
Section II: Free Response
4 Questions | 1hr 40mins | 50% of Score
In this section, you’ll engage in deeper analysis and application through four structured free-response questions that cover a broad spectrum of physics topics:
- Mathematical Routines: Solve complex problems using mathematical methods specific to physics, demonstrating precision and step-by-step reasoning.
- Translation between Representations: Convert information between different formats, such as graphical data to algebraic expressions, or verbal descriptions to mathematical formulas.
- Experimental Design: Design and describe experimental approaches to solving physics problems, including the selection of appropriate tools and techniques.
- Qualitative/Quantitative Translation: Move fluidly between qualitative descriptions and quantitative analysis, using your skills to bridge the gap between conceptual understanding and practical application.
Section I: Multiple Choice
40 Questions | 1hr 20mins | 50% of Score
This section assesses your understanding of advanced physics concepts through various types of questions, both discrete and in sets. The questions are designed around stimuli such as diagrams, data sets, or conceptual scenarios, challenging you to:
- Concept Application: Apply physical principles to solve problems in areas such as fluid mechanics, thermodynamics, electricity, and magnetism.
- Data Analysis: Interpret complex data from graphs, charts, and tables, using it to make informed decisions and calculations.
- Theoretical Understanding: Demonstrate a thorough grasp of physics concepts by analyzing scenarios and answering related questions.
- Problem-Solving: Employ algebra-based solutions to tackle real-world physics challenges, reflecting an understanding of both conceptual and practical aspects of the curriculum.
Section II: Free Response
4 Questions | 1hr 40mins | 50% of Score
In this section, you’ll engage in deeper analysis and application through four structured free-response questions that cover a broad spectrum of physics topics:
- Mathematical Routines: Solve complex problems using mathematical methods specific to physics, demonstrating precision and step-by-step reasoning.
- Translation between Representations: Convert information between different formats, such as graphical data to algebraic expressions, or verbal descriptions to mathematical formulas.
- Experimental Design: Design and describe experimental approaches to solving physics problems, including the selection of appropriate tools and techniques.
- Qualitative/Quantitative Translation: Move fluidly between qualitative descriptions and quantitative analysis, using your skills to bridge the gap between conceptual understanding and practical application.
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