Master college physics — one clear step at a time
From Newton's laws to Faraday's law, this course walks you through every major topic in introductory physics with plain-language reasoning, worked examples, and a problem-solving framework built for exams, labs, and beyond — no physics background required.

"I don't teach formulas — I teach you how to think through a problem so the right formula becomes obvious."
— biologyteachermae

What you'll learn
What you'll be able to do
- Apply Newton's laws to solve mechanics problems involving forces, motion, and energy with confidence
- Analyze rotational dynamics, torque, and angular momentum in real-world systems
- Solve problems in thermodynamics including heat transfer, gas laws, and the laws of thermodynamics
- Understand and calculate wave behavior, sound, and optics phenomena from first principles
- Master electric fields, circuits, and magnetic forces using core electromagnetism equations
- Develop a systematic problem-solving framework that transfers to exams, labs, and advanced coursework
How it works
A school that adapts to you
This isn't a set of static videos. Every lesson is generated live and tuned to where you actually are.
We learn your level
A quick placement check tailors your starting point so you're never bored or lost.
Lessons adapt as you go
Each lesson is written for your pace and your goal, adjusting as your skills grow.
Your AI coach keeps you moving
Checkpoints, feedback, and gentle nudges turn progress into a real result.
The curriculum
What's inside your school
6 modules · 34 lessons

Foundations: Math Tools & Kinematics
Builds the essential mathematical and conceptual groundwork — vectors, units, and motion in one and two dimensions — that underpins every topic in the course.
- 1.1Units, Significant Figures & Dimensional AnalysisIncluded
- 1.2Vectors: Components, Addition & Dot ProductsIncluded
- 1.3Motion in One Dimension: Velocity & AccelerationIncluded
- 1.4Projectile Motion & 2D KinematicsIncluded
- 1.5A Systematic Problem-Solving FrameworkIncluded
Newtonian Mechanics: Forces, Energy & Momentum
Applies Newton's three laws through forces, work, energy conservation, and momentum to solve a wide range of mechanics problems.
- 2.1Newton's Laws & Free-Body DiagramsIncluded
- 2.2Friction, Normal Forces & Inclined PlanesIncluded
- 2.3Circular Motion & Centripetal ForceIncluded
- 2.4Work, Kinetic Energy & the Work-Energy TheoremIncluded
- 2.5Conservation of Energy, Potential Energy & PowerIncluded
- 2.6Impulse, Momentum & CollisionsIncluded
Rotational Dynamics & Gravitation
Extends mechanics to rotating systems — torque, moment of inertia, angular momentum — and unifies it with Newton's law of universal gravitation.
- 3.1Rotational Kinematics & Angular VariablesIncluded
- 3.2Torque, Moment of Inertia & Newton's Second Law for RotationIncluded
- 3.3Rotational Kinetic Energy & Rolling MotionIncluded
- 3.4Angular Momentum & Its ConservationIncluded
- 3.5Static Equilibrium & Center of MassIncluded
- 3.6Newton's Law of Gravitation, Orbits & Kepler's LawsIncluded
Thermodynamics
Covers temperature, heat transfer, ideal gas behavior, and the laws of thermodynamics to solve problems in thermal physics and heat engines.
- 4.1Temperature, Thermal Expansion & HeatIncluded
- 4.2Ideal Gas Law & Kinetic TheoryIncluded
- 4.3Heat Transfer: Conduction, Convection & RadiationIncluded
- 4.4The First Law of Thermodynamics & Internal EnergyIncluded
- 4.5The Second Law, Entropy & Heat EnginesIncluded
Waves, Sound & Optics
Explores mechanical waves, sound phenomena, and the behavior of light — from reflection and refraction to interference and diffraction — from first principles.
- 5.1Wave Properties: Amplitude, Frequency & Wave SpeedIncluded
- 5.2Superposition, Interference & Standing WavesIncluded
- 5.3Sound Intensity, the Decibel Scale & the Doppler EffectIncluded
- 5.4Reflection, Refraction & Snell's LawIncluded
- 5.5Mirrors & Lenses: Ray Diagrams & the Thin-Lens EquationIncluded
- 5.6Wave Optics: Diffraction & Interference of LightIncluded
Electromagnetism: Fields, Circuits & Magnetic Forces
Builds mastery of electric fields, electric potential, DC circuits, and magnetic forces — the core of introductory electromagnetism — through equations and worked exam problems.
- 6.1Electric Charge, Coulomb's Law & Electric FieldsIncluded
- 6.2Electric Potential, Voltage & CapacitanceIncluded
- 6.3Current, Resistance & Ohm's LawIncluded
- 6.4DC Circuits: Kirchhoff's Laws & PowerIncluded
- 6.5Magnetic Fields, Forces on Charges & the Lorentz ForceIncluded
- 6.6Electromagnetic Induction & Faraday's LawIncluded
Who it's for
Is this you?
Pre-med students
Builds the physics content knowledge and problem-solving fluency the MCAT demands, from waves and optics to circuits and electrostatics.
Engineering undergrads
Provides the rigorous conceptual and quantitative foundation needed before upper-division mechanics, circuits, and thermodynamics courses.
Students re-taking physics
Rebuilds from the ground up — fixing shaky math tools and problem-solving habits that derailed the first attempt.
Self-learners & career changers
Delivers a complete, structured college-level physics education for anyone tackling the subject independently and on their own schedule.
Physics II students catching up
Covers all the classical mechanics and thermodynamics prerequisite knowledge that students need solid before electromagnetism makes sense.
Non-traditional & returning students
Meets you exactly where you are — refreshing rusty math and building genuine physics confidence without assuming recent classroom experience.
Questions
Frequently asked
Your teacher
A note from your teacher
biologyteachermae
If you're reading this, there's a good chance physics has already given you trouble — or you know it's coming and you want to get ahead of it. Maybe you sat through a lecture on Newton's Second Law and nodded along, then stared blankly at the homework. Maybe you passed the first exam and felt the wheels start to slip when torque and rotation showed up. Maybe you're heading into the MCAT or a new engineering sequence and you know your foundation has gaps you can't afford to leave unfilled. I've been there with hundreds of students, and I want you to know: this is not a talent problem. It's a framework problem.
Physics feels hard for most students because it gets taught backward — formulas first, understanding second, if ever. You end up with a collection of equations you don't trust and no reliable way to know which one applies to a given situation. That's an exhausting and unstable way to learn. Everything I do in this course is designed to fix that at the root. We start with the reasoning — what is actually happening physically — and then we build the mathematics on top of that reasoning. By the time you're writing down an equation, you already know why it's the right one.
The systematic problem-solving framework I introduce in the first section isn't a gimmick. It's the same structured approach that strong physics students use intuitively, made explicit and teachable. You'll use it on free-body diagrams, on thermodynamics problems, on circuit analysis, on optics. It transfers. And that's the point — I want you to walk out of this course with a skill, not just a set of memorized facts that fade before the next exam.
I've designed this course to cover the full arc of introductory college physics: from kinematics and forces through rotational dynamics, thermodynamics, waves and optics, all the way to electromagnetism and Faraday's Law. That's a lot of ground, and we take it one honest step at a time. No hand-waving. No skipping the parts that are genuinely tricky. Just clear explanations, worked examples, and the patience to do it right.
You don't need to be a "physics person" to succeed here. You need to be willing to work through problems carefully and trust the process. I'll handle the rest. Let's build something solid together.
— biologyteachermae
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- 6 modules, 34 lessons
- AI-adaptive lessons tuned to your level
- Quizzes & checkpoints to lock in progress
- Your own AI learning coach
- Learn on any device, at your pace
- Full access for as long as you're subscribed