42 free physics practice prompts for ChatGPT, Claude, and Gemini. Every template ships with smart variables, ready to copy or run directly in the AgentDock editor.
Solve for pressure, velocity, or height at a point in a moving fluid using Bernoulli's equation, applying the continuity equation first when pipe diameter changes.
Solve for the enthalpy change of a reaction from calorimetry data, calculating heat first and then dividing by moles, using an engineering heat-transfer framing.
Solve for the mechanical advantage of a lever, pulley, inclined plane, wheel and axle, or screw using the matching formula, with force-distance trade-offs made explicit.
Solve for centripetal force, mass, velocity, or radius using F = mv²/r, with substitutions checked, or explain circular motion with a worked example.
Practice Kirchhoff's current and voltage laws on a multi-loop circuit, checking submitted equations or generating a fresh circuit with an answer key.
Solve for the electrostatic force, a charge, or the distance between two charges using Coulomb's law, with every substitution and unit shown and verified.
Solve for voltage, current, or resistance using Ohm's law, or calculate each resistor's voltage drop in a series circuit, with the answer verified.
Solve for net work, final kinetic energy, or final velocity using the work-energy theorem, with every substitution and unit shown and verified against the equation.
Solve for momentum, mass, or velocity using p equals m times v, with every substitution verified, or explain the formula through a worked example.
Practice adding and subtracting displacement or force vectors using the graphical tip-to-tail method and the component method, with a full worked answer key.
Solve for electrical power using the form that matches the two known values, voltage, current, or resistance, verified against a second form of the equation.
Generate a solved answer for net torque, moment of inertia, or angular acceleration using the rotational form of Newton's second law, with every step verified.
Solve for a photoelectron's maximum kinetic energy, work function, or light frequency using the photoelectric effect equation, with every step verified against the original formula.
Explain which law of thermodynamics governs a scenario, solve the relevant energy or entropy relationship, and generate practice scenarios with worked answer keys.
Solve for wave speed on a stretched string from tension and linear mass density, or find the missing quantity, with every substitution and unit verified.
Solve for observed frequency using the Doppler effect formula with the correct sign for a moving source or observer, or explain the pitch-shift effect.
Practice solving Newton's law of viscosity, shear stress equals dynamic viscosity times the velocity gradient, with a full worked answer key for fluid-layer scenarios.
Solve for the missing variable in constant-acceleration motion using the correct SUVAT equation, with every substitution shown and the answer verified against a second equation.
Solve for electric field strength, source charge, or distance around a point charge, then find the force on a test charge placed in that field.
Solve for buoyant force, displaced volume, or the fraction of a floating object above the surface using Archimedes' principle, with substitutions and units shown.
Solve for final velocities in an elastic collision or the shared velocity in a perfectly inelastic collision, verifying results against kinetic energy conservation.
Solve for an unknown force or distance in a rigid body at rotational equilibrium, balancing torques and forces with every step shown and verified.
Solve for average velocity or average acceleration with every substitution and unit shown, verifying the final answer against the original equation.
Generate an RC circuit's time constant, charge, voltage, or current at a chosen moment, with every calculation step shown and the result verified.
Practice converting between wavelength, frequency, and photon energy across the electromagnetic spectrum, checking a given answer or generating new problems with an answer key.
Solve for pressure, depth, or fluid density using the hydrostatic pressure formula, with every substitution verified and the container-shape independence explained.
Solve for the angle of refraction, angle of incidence, or index of refraction using Snell's law, or find the critical angle for total internal reflection.
Solve for electric potential at a point or potential energy between two charges, with the two related but distinct quantities told apart clearly.
Solve for a circuit's equivalent resistance from series and parallel resistors, or the current and voltage at each resistor, with every step checked.
Solve for magnetic force on a moving charge or current-carrying wire, and explain the right-hand rule that determines the force's direction through a worked example.
Solve for specific gravity, density, or whether a substance floats or sinks in water, using specific gravity equals density over water's density, with units shown.
Solve for density, mass, or volume using rho equals m over V, with every substitution and unit shown and verified, or explain the formula.
Generate a solved answer for torque, applied force, or moment arm using tau equals r F sine theta, with every step shown and unit tracked.
Solve for induced EMF, magnetic flux, or rate of flux change using Faraday's law, with substitutions verified, or explain Lenz's law with a worked example.
Solve for a standing wave's resonant frequency, wavelength, or harmonic number on a string or pipe, or explain why closed pipes skip even harmonics.
Solve for a missing rotational kinematics variable by picking the equation that omits the unknown, with every step shown and verified against a second equation.
Solve for magnetic field strength, current, or distance around a current-carrying wire using B equals mu-naught I over 2 pi r, with each step verified.
Solve for angular momentum, angular velocity, or moment of inertia using L equals I omega, verifying substitutions, or explain why a spinning skater speeds up.
Solve for impulse, force, time, or change in momentum using the impulse-momentum theorem, with every substitution verified against the original equation.
Practice tracking mechanical energy converting between kinetic and potential forms in falling objects, pendulums, and roller coasters, checking a scenario or generating new practice problems.
Solve for gravitational potential energy, mass, or height using PE = mgh, with every substitution shown, or the formula explained through a worked example.
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