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AI Physics Tutor — Understand, Don't Memorize

Ryna AI solves physics problems while explaining the formula used, when it applies, and why it's the right approach. Works on photos (Plus). Deep Thinking handles olympiad-level too.

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Ryna AI Editorial Team · Updated 08.02.2026

Physics is one of the subjects students struggle with most — and the problem is usually not knowing the formula but not seeing which formula to set up, when, and how. Misreading the givens in a kinematics problem, or drawing a free-body diagram wrong in a forces question, sends you to the wrong answer even when you know the right formula.

What Ryna AI does here is not hand you an answer; it solves the problem step by step, with the reasoning. It separates the givens from what's asked, states which physics principle applies, sets up the formula, and answers 'why this step' at each stage. You can upload a photo (Plus plan) or type the question; for diagram-based questions, describing the figure in words speeds up the solution.

The key: use Ryna AI like a tutor, not a copy machine. Read the solution, redo the steps in your own notebook, and unpack where you're stuck with 'explain this step more simply.' The free plan covers near-unlimited questions daily; Plus (399.99 TRY/mo) lets you upload question photos and solve from the image. Works across the full Turkish YKS (TYT-AYT) and LGS physics syllabus.

Why use Ryna AI for this

Step-by-step solution: givens, unknown, applicable principle, formula setup and result shown separately — not just the answer.

Topic-based study: kinematics, dynamics (Newton's laws), work-energy, momentum, electricity, optics and waves.

'Why this step?' explanations: ask the reasoning behind each formula choice and learn by understanding, not memorizing.

Solve from a photo (Plus): upload a photo of a figure-based or handwritten question and solve from the image.

Similar-question generation: ask 'give me 3 more like this' to reinforce before an exam.

Unit and order-of-magnitude check: verify whether the result's unit and magnitude make physical sense.

Example prompts

Copy any prompt below and paste into chat.rynaai.com. Each prompt is tuned for a different scenario — try them all to see how Ryna AI adapts.

>A car moving at 20 m/s stops in 4 seconds. Find its acceleration and the distance until it stops, step by step. Explain which formula you use and why.
>Projectile: an object launched at 30° with 25 m/s. Solve for range, maximum height, and time of flight. g=10 m/s².
>On a horizontal surface with friction, a 20 N force is applied to a 5 kg mass, friction coefficient 0.2. Explain the acceleration with a free-body diagram.
>Work-energy: a 2 kg mass is released from 10 m. Find the impact speed using energy conservation, then verify with kinematics.
>A circuit has a 12 V battery with 3 ohm and 6 ohm resistors in series. Compute the total current and the voltage across each resistor.
>Generate 3 practice questions on the same topic as this one but with different numbers, and give their solutions.

How it works — step by step

  1. 1

    Write or upload the question clearly

    Open chat.rynaai.com. Type the full question; if there's a figure, upload a photo on Plus or describe the diagram in words (angles, directions, contact points).

  2. 2

    Separate givens from the unknown

    Say 'first list the givens and the unknown quantity.' This step is half of choosing the right formula and prevents most errors.

  3. 3

    Ask for the principle and formula

    Ask 'which physics principle applies, and why?' Ryna states the principle (e.g. energy conservation) first, then sets up the formula — logic, not memorization.

  4. 4

    Redo the solution in your notebook

    Read the steps and solve it yourself. Where stuck, say 'explain this step more simply.' Don't move on without understanding.

Example: input → output

You ask

A car moving at 20 m/s stops in 4 seconds. Find its acceleration and the distance until it stops, step by step.

Ryna AI returns

Givens: initial velocity v₀ = 20 m/s, final velocity v = 0, time t = 4 s. Unknown: acceleration a and distance x. 1) Acceleration (a = (v − v₀) / t): a = (0 − 20) / 4 = −5 m/s² Negative because the car is decelerating; magnitude 5 m/s². 2) Distance (x = v₀·t + ½·a·t²): x = 20·4 + ½·(−5)·4² = 80 − 40 = 40 m Check: average velocity (20+0)/2 = 10 m/s, over 4 s that's 10·4 = 40 m — consistent. Result: acceleration 5 m/s² (deceleration), distance 40 m.

Pro tips

  • Always have the result checked for units and magnitude: 'does this result's unit and size make sense?' Most wrong physics answers are caught here.
  • For figure-based questions, the better you describe the diagram, the more accurate the solution; state angles, directions and contact surfaces.
  • Say 'show the intermediate steps, not just the answer' — partial credit on exams comes from the working.
  • When concepts blur, pause the question and say 'summarize the 3 key formulas of this topic and when to use each' to consolidate first.
  • State the level (e.g. TYT vs AYT): 'explain this at TYT level' keeps it from going unnecessarily deep.
  • For graph questions (velocity-time, position-time), describe the axes and key points; Ryna explains what the slope and area represent.

Common mistakes to avoid

  • Saying only 'give the answer': without the working you don't learn and can't solve a similar question on the exam. Always ask 'solve step by step.'
  • Writing incomplete givens: dropping something like the friction coefficient, an angle, or a direction makes the solution wrong.
  • Mixing units (cm/m, km/h with m/s): have the unit conversion done up front.
  • Reading the solution and assuming you 'got it' without redoing it in your own notebook — real learning happens on the redo.
  • Not specifying the value of g (9.8 vs 10): it changes the result, so state it at the start.

Who this is for

High school (AP Physics), early university, engineering students, olympiad candidates.

FAQ

Can I solve a physics question from a photo?

Yes, on Plus (399.99 TRY/mo) you can upload a photo of the question and solve from the image. On the free plan you type the question; describing the figure in words is enough.

Does it work for all TYT and AYT physics topics?

Yes; kinematics, dynamics, work-energy, momentum, electricity, magnetism, optics and waves — the whole syllabus. Say 'at TYT level' or 'at AYT level' to set the difficulty.

Does it show the solution, not just the answer?

Yes, by default it solves step by step: givens, applicable principle, formula setup and result. Ask 'show the intermediate steps' for more detail.

Are the answers always correct?

They're usually correct, but AI can make mistakes — especially on complex figure-based questions, check the result's units and logic yourself. Use Ryna as a learning tool, not the single source of truth.

Can I practice with similar questions?

Yes — say 'give 3 questions on the same topic with different numbers and include the solutions' to reinforce before an exam.

Related use cases

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