AP Physics 2: Algebra
AP Physics 2: Algebra is a continuation of AP Physics 1, covering additional topics in physics
90%
of students score
4 and above
78%
students get a top score of
5 in
AP Physics 2: Algebra
80%
students showed exceptional
performance in their first semester of
AP Physics 2: Algebra
Course Concept
AP Physics 2: Algebra-Based is an advanced placement course that builds upon the concepts and principles introduced in AP Physics 1. It focuses on further developing students' understanding of physics topics and their ability to apply algebraic problem-solving skills to more complex situations.
The course covers a wide range of topics, including fluid mechanics, thermodynamics, electric circuits, electromagnetism, optics, and quantum physics. It explores these topics in more depth and introduces additional concepts such as capacitance, resistance, electric fields, magnetic fields, wave interference, and atomic and nuclear physics.
- Advanced Concepts: Students delve deeper into the principles and theories of physics, expanding their knowledge beyond the fundamental concepts covered in AP Physics 1. They explore more complex phenomena and phenomena that cannot be explained solely through classical physics.
- Mathematical Problem-Solving: Similar to AP Physics 1, AP Physics 2 emphasizes the use of algebraic problem-solving techniques to analyze and solve physics problems. Students continue to apply mathematical relationships, set up equations, and use appropriate units to solve quantitative problems.
- Laboratory Investigations: The course includes laboratory activities and experiments to deepen students' understanding of physics concepts and develop their skills in experimental design, data collection, and analysis. They gain hands-on experience with equipment and learn to interpret and communicate their findings.
- Science Practices: AP Physics 2 focuses on developing students' scientific inquiry skills and their ability to apply scientific practices. They learn to ask questions, design investigations, analyze data, and construct explanations and arguments based on evidence.
- Critical Thinking and Reasoning: The course challenges students to think critically and reason logically when dealing with complex physics problems. They learn to analyze and interpret data, make connections between different concepts, and apply their understanding to real-world situations.
- Free-Response Questions: The AP Physics 2 exam includes both multiple-choice and free-response questions. The free-response section requires students to demonstrate their ability to solve complex problems, design experiments, and provide explanations or justifications for their answers.
AP Physics 2: Algebra
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COURSE SYLLABUS PDF- The Nature of Electric Charges
- The Detection and Measurement of Electric Charges
- Coulomb's Law
- The Electric Field
- Electric Potential
- Capacitance
- Practice Exercises
- Answers Explained
- Current and Electricity
- Electric Resistance
- Electric Power and Energy
- Kirchhoff's Rules
- Combination Circuits
- Capacitors in Circuits
- Electrical Energy Is Potential Energy
- Practice Exercises
- Answers Explained
- Magnetic Fields and Forces
- Magnetic Force on a Moving Charge
- Magnetic Fields Due to Currents in Wires
- Activate
- Magnetic Force Between Two Wires
- Induced Motional EMF in a Wire
- Magnetic Flux and Faraday's Law of Induction
- Practice Exercises
- Answers Explained
- Electromagnetic Waves
- Reflection
- Refraction
- Total Internal Reflection
- Interference and Diffraction of Light
- Polarization of Light
- Practice Exercises
- Answers Explained
- Image Formation in Plane Mirrors
- Image Formation in Curved Mirrors
- Image Formation in Lenses
- Practice Exercises
- Answers Explained
- Static Fluids
- Pascal's Principle
- Static Pressure and Depth
- Buoyancy and Archimedes' Principle
- Fluids in Motion
- Bernoulli's Equation
- Practice Exercises
- Answers Explained
- Temperature and Its Measurement
- Molar Quantities
- The Ideal Gas Law Equation of State
- Kinetic-Molecular Theory
- Work Done by Expanding Gases
- The First Law of Thermodynamics
- The Second Law of Thermodynamics and Heat Engines
- Heat Transfer
- Practice Exercises
- Answers Explained
- Photoelectric Effect
- Photon Momentum
- Matter Waves
- Spectral Lines
- Special Relativity
- Mass-Energy Equivalence
- Atomic Structure and Rutherford's Model
- The Bohr Model
- Quantum Mechanics and the Electron Cloud Model
- Nuclear Structure and Stability
- Binding Energy
- Radioactive Decay
- Fission
- Fusion
- Practice Exercises
- Answers Explained
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Complete Application
Step 1 of the APGuru process is the application phase. We'll ask for basic information such as your name, contact details, current educational level, and your specific goals or challenges. Once you've filled out the application, click the submit button. Your application will be promptly reviewed by our admissions team.
Take a Trial Class
Step 2 is the trial class, where applicants receive an invitation to experience our teaching methods and interact with instructors. During this session, students engage in discussions, ask questions, and evaluate whether APGuru aligns with their learning preferences and goals, helping them make an informed decision.
Join AP Guru
Step 3 of the APGuru process involves officially joining the program after a successful trial class. Students confirm their enrollment, select their desired course or program, and gain access to comprehensive study resources. They begin attending regular classes, receiving guidance from experienced instructors, and tracking their progress towards academic excellence.