Pythos Oracle

AI Physics Tutor & Mechanics Solver

Work through classical mechanics, kinematic equations, projectile motion, and conservation laws with verified dimensional consistency.

Conceptual Physics & Dimensional Analysis

Physics is more than plugging numbers into formulas—it is understanding conservation laws, vector decomposition, and dimensional relationships. Pythos helps you set up free-body diagrams, balance forces, and verify units across SI and imperial systems.

Core Physics Disciplines

✦ Kinematics & Projectile Motion

Solve constant acceleration problems using: $$v = v_0 + at, \quad \Delta x = v_0 t + \frac{1}{2}at^2, \quad v^2 = v_0^2 + 2a\Delta x$$

✦ Newton's Laws & Dynamics

Apply $\Sigma F = ma$, calculate static/kinetic friction ($f_k = \mu_k F_N$), tension in ropes, and centripetal acceleration ($a_c = \frac{v^2}{r}$).

✦ Work, Energy & Momentum

Compute kinetic energy ($E_k = \frac{1}{2}mv^2$), gravitational potential energy ($E_p = mgh$), elastic collisions, and impulse.

✦ Gravitation & Orbital Mechanics

Explore Newton's Law of Universal Gravitation: $$F_g = G \frac{m_1 m_2}{r^2}$$ escape velocity, and satellite orbits.

Sample Physics Problems for Pythos

Try working through these problems with Pythos:

"A ball is thrown upward at $15\text{ m/s}$ from a height of $2\text{ m}$. Find its peak height and flight time."
"Calculate the tension in two ropes supporting a $50\text{ kg}$ weight at $30^\circ$ and $60^\circ$."
"Derive the relationship between elastic collision momentum conservation and kinetic energy."
"Convert $65\text{ mph}$ to $\text{m/s}$ and calculate kinetic energy for a $1200\text{ kg}$ vehicle."
Practice Physics in Pythos