AC Circuits
Compare R, RC, RL, and RLC circuits: phase, impedance, resonance.
LaunchChoose simulations in physics, chemistry, biology, and math and start a lesson in minutes
Compare R, RC, RL, and RLC circuits: phase, impedance, resonance.
LaunchExplore how filters work! Add activated carbon to polluted water and watch how its porous surface absorbs harmful molecules.
LaunchBuild squares and rectangles to see why (a+b)², (a-b)², and a²-b² work.
LaunchBuild a protein molecule! Connect amino acids with peptide bonds and observe the formation of a long polymer chain, the basis of all life.
LaunchExplore the ammonia molecule. Learn how the lone electron pair of nitrogen turns the molecule into a trigonal pyramid and creates a dipole moment.
LaunchLearn to measure the world in degrees! Estimate angles by eye, use a virtual protractor, and construct specific angles with high precision.
LaunchBecome an animal breeder! Select rabbits for fur density and stamina, breed them over several generations, and create a new unique breed.
LaunchExplore the animal kingdom. Compare vertebrates and invertebrates, identify classes by key traits (structure, habitat), and test your knowledge in mini-missions.
LaunchEnsure a soft landing! Deploy drogue and main parachutes at the right altitude, account for air resistance, and safely splash the capsule into the ocean.
LaunchControl the spacecraft! Adjust the entry angle into Earth's atmosphere so the capsule neither burns up from friction nor skips back into space.
LaunchBuild the electron shell of any element. Fill s, p, d, and f orbitals according to Hund's and Pauli's rules, exploring the quantum numbers of each electron.
LaunchCompare bacteria, fungi, and lichens: structure and roles.
LaunchTrace the path of blood through the systemic and pulmonary circulatory systems. Study the internal structure of the heart, valve functions, and the transport of oxygen from lungs to organs.
LaunchFollow the path of air from the trachea to the alveoli. Observe microscopic gas exchange (how O₂ enters the blood and CO₂ leaves) and compare breathing rates at rest and during exercise.
LaunchAn amazing way to calculate π! Throw virtual needles onto a lined floor and see how the probability of crossing the lines is related to the famous number.
LaunchFeel like a creator of elements! Add protons and neutrons to the nucleus, create various isotopes, and test them for radioactive stability.
LaunchWhy don't ships sink? Drop blocks of different volume and mass into water. Compare their densities with the fluid's density and study the buoyant force.
LaunchStudy cap mushroom structure and key foraging safety rules.
LaunchCharge and discharge a capacitor and explore the RC time constant.
LaunchExplore the microworld! Look inside a living cell, study the functions of all organelles, and find the key differences between plant and animal cells.
LaunchVisualize the invisible! Place electric charges on the screen and observe how electric field lines and equipotential surfaces are formed.
LaunchBuild molecules from atoms! Draw Lewis structures, account for lone electron pairs, and learn how they shape the 3D geometry of molecules via VSEPR theory.
LaunchHow does a system react to stress? Change concentration, temperature, and pressure to see how chemical equilibrium shifts according to Le Chatelier's principle.
LaunchSpin the physics carousel! Change the mass, velocity, and orbit radius to understand how they affect centripetal acceleration and the force keeping an object in a circle.
LaunchMove into 2D space! Control balls on a plane, adjust their velocity vectors, and study the conservation of momentum across both X and Y axes simultaneously.
LaunchStudy the physics of crashes and billiards. Collide carts on a track and verify how momentum and kinetic energy are conserved in perfectly elastic and inelastic collisions.
LaunchBecome a molecule architect! Select a central ion, attach ligands to it, and create stable complex compounds with desired properties.
LaunchPlay with space! Draw geometric shapes in the Cartesian coordinate system, translate them along axes, rotate, and reflect them across the center or lines.
LaunchExplore electrostatics! Change the magnitude and sign of charges, move them, and observe how the force of attraction or repulsion depends on the square of the distance.
LaunchDiscover how atoms share electrons! Bring nonmetals together and observe the formation of shared electron pairs to achieve a stable octet.
LaunchFeel like a WWII cryptanalyst. Study the inner workings of the Enigma cipher machine and try to crack the code using cribs (known fragments of text).
LaunchStudy the macroworld through microstructure. Compare atomic, molecular, and ionic lattices (diamond, dry ice, salt) and understand why they have different physical properties.
LaunchExplore 3D geometry. Rotate a sphere inscribed in a cylinder, study their planar cross-sections, and visually prove that their volumes have a 2:3 ratio.
LaunchObserve the random motion of molecules. Study how temperature, particle mass, and concentration affect the speed of substance mixing (diffusion).
LaunchHow does food turn into energy? Explore the anatomy of the digestive tract, the role of pH, and specific enzymes (amylase, pepsin, lipase) in breaking down proteins, fats, and carbohydrates.
LaunchBecome a discoverer! Adjust the mass and orbit of a hypothetical Planet X so that its gravity explains the strange perturbations in Uranus's motion.
LaunchRecreate Newton's historical discovery! Calculate the number π by approximating the area of a quarter circle using binomial expansion and series.
LaunchExplore the sieve, divisibility rules, and GCD/LCM with grids and gears.
LaunchStudy the structure of life's most important molecule! Build the second DNA strand using complementarity rules (A-T, G-C), explore codons, and start the process of genetic code replication.
LaunchManage a closed biosphere! Maintain the fragile balance of oxygen and carbon dioxide, control species populations, and ensure the survival of the ecosystem.
LaunchPass current through salt and acid solutions. Discover why copper deposits or hydrogen evolves at the cathode, and test Faraday's law in action.
LaunchMatch EM bands and link wavelength with frequency and energy.
LaunchCreate your own skate park! Launch a skater on a ramp and track in real-time how potential energy converts into kinetic energy and is lost to friction.
LaunchSolve positive linear equations on honest balance scales: equal actions on both sides, equal-group sharing, and substitution check.
LaunchWitness the mechanisms of evolution in action. Observe how predators and habitat environments affect the frequency of traits (like color) in a bug population over generations.
LaunchTrace the path of blood filtration in the kidneys. Study the nephron structure, the process of urine formation, and learn how the body maintains water-salt balance.
LaunchUnderstand Newton's second law. Apply force to objects of different masses, account for friction, and observe how the body's acceleration and velocity change.
LaunchAdd fractions visually! Divide a pizza or chocolate bar into equal parts and find their exact position on the number line.
LaunchHow do you get any function from a basic one? Learn the rules of mathematical transformations: translations, stretchings, compressions, and reflections of graphs.
LaunchControl pressure, volume, and temperature! Compress the piston, heat the gas, and watch the molecules move to understand the macroscopic properties of a gas.
LaunchLearn the laws of optics! Move lenses, mirrors, and light sources to understand how rays refract and how real and virtual images are formed.
LaunchUnlock the secrets of sugars! Explore how a linear glucose molecule folds into a cyclic alpha- or beta-form and dynamically transitions from one to the other.
LaunchDesign an ideal heat engine! Change the temperatures of the hot and cold reservoirs to understand what determines efficiency and why the Carnot limit cannot be exceeded.
LaunchStudy elastic deformations. Stretch and compress a spring, change its stiffness, and track how the restoring force is related to potential energy.
LaunchDiscover the secret of liquid water. Observe how polar molecules attract each other due to weak intermolecular forces — hydrogen bonds.
LaunchMeasure the pressure at the bottom of a pool. Study how fluid depth, density, and planetary gravity affect the pressure of a liquid column.
LaunchObserve the magic of wave physics. Create waves from multiple sources and see how they superimpose, constructively amplifying or destructively canceling.
LaunchFind out why iron rusts. Test the effects of water and salts on the corrosion process and discover effective methods to protect metals.
LaunchGrasp celestial mechanics. Observe planets moving in ellipses, verify the law of equal areas, and measure how orbital period depends on orbital radius.
LaunchHow are planets kept in orbit? Change the masses of two bodies and the distance between them to explore how the force of gravitational attraction works.
LaunchStudy the principles of a lever. Place loads of different masses on a beam, calculate the torque, and find the perfect balance point.
LaunchMaster stoichiometry in practice! Build molecules according to a chemical 'recipe' and determine which substance runs out first, stopping the reaction.
LaunchUnderstand the essence of a straight line. Change the slope (m) and intercept (b), find intersection points with axes, and solve systems of linear equations graphically.
LaunchFind the intersections of lines! Solve systems of equations graphically and explore three possible cases: one solution, no solutions (parallel), or infinitely many.
LaunchDiscover Faraday's law. Move a magnet through a wire coil and watch how a changing magnetic field generates an induced current and lights a bulb.
LaunchBuild an autonomous energy system. Manage solar power during the day, charge batteries, and ensure the base has uninterrupted power throughout the cold Martian night.
LaunchDesign a reliable bridge for the Mars rover. Learn the physics of structures: load distribution, tension, and compression forces to build the strongest truss.
LaunchHelp power the Mars base. Build electrical circuits using sources, resistors, and lamps, explore Ohm's law, and study series and parallel connections.
LaunchExplore the impact of environment on survival. Change the Martian climate and observe which advantageous traits help a population of Martian rabbits adapt and survive.
LaunchStep into the shoes of a software engineer! Create a proper sequence of commands to navigate the Mars rover around obstacles and reach its target.
LaunchTune launch parameters and send a rocket toward Mars.
LaunchExperience communication delay in space! Calculate the radio signal travel time and control the Mars rover from afar, considering the physics of wave propagation.
LaunchClassical genetics in action! Perform pea crosses, build Punnett squares, and study the patterns of dominant and recessive trait transmission from parents to offspring.
LaunchLook inside a metal! Observe how positive ions are held in a crystal lattice by a freely moving 'electron gas', providing malleability and conductivity.
LaunchWitness the creation of life! Go through all phases of cell division—from prophase to telophase—and track how chromosomes separate to form two new cells.
LaunchDive into crazy topology! Rotate and study paradoxical one-sided surfaces: the Möbius strip and the mysterious Klein bottle with no internal volume.
LaunchUnderstand Moon phases and their link to orbital position.
LaunchUnderstand negative numbers with a thermometer, an elevator, and addition and subtraction jumps on a number line.
LaunchHow do brain cells communicate? Follow the path of an electrical signal along a neuron's axon, study the synapse mechanism, and the release of neurotransmitters.
LaunchOne element — different properties! Compare the structures of diamond and graphite, oxygen and ozone, phosphorus, and sulfur to understand the nature of allotropy.
LaunchVisualize inequalities. Plot strict and non-strict intervals on the number line, find intersections of sets, and solve systems of inequalities.
LaunchBuild DC circuits and compare series vs. parallel.
LaunchFind out how the same composition yields different properties! Build isomers, modify the carbon skeleton, and identify functional groups.
LaunchUnderstand the mechanisms of organic chemistry! Recognize reaction types: substitution, addition, elimination, and polymerization.
LaunchTrack tinder fungus infection in a tree and weakening signs.
LaunchDiscover the building blocks of the universe! Explore the Standard Model, assemble protons and neutrons from quarks, and investigate fundamental interactions.
LaunchExplore the laws of oscillation. Change the string length, bob mass, and release angle to understand what affects the period and frequency of a pendulum.
LaunchBecome a finance master! Calculate sale discounts, taxes, and markups. Solve direct and inverse percentage problems easily and quickly.
LaunchMix reagents like a true chemist! Add acid or base, monitor the pH of the solution, and learn how to achieve complete neutralization.
LaunchGrasp the mystery of states of matter! Heat ice and observe how the temperature graph changes during melting and boiling while latent heat does its work.
LaunchTest how light frequency and voltage affect the photoelectric effect.
LaunchExplore how light, CO₂, and water limit photosynthesis.
LaunchLearn to distinguish physical phenomena from chemical ones! Conduct virtual experiments and observe gas evolution, color changes, or precipitate formation.
LaunchCreate the perfect tomato variety! Improve fruit size, yield, and drought resistance from generation to generation, finding the right balance between useful qualities.
LaunchStudy plant organs: root, stem, leaf, flower, and fruit.
LaunchTrace water's path and effects of humidity, wind, and light.
LaunchGrasp the laws of randomness! Run tens and hundreds of trials (coin flips or dice rolls) to see how the frequency of an event approaches its probability.
LaunchSee the gap between linear and exponential growth: an arithmetic ladder, grains doubling on a chessboard, and simple vs compound interest in a bank deposit.
LaunchCalculate the perfect throw! Change the angle, initial velocity, and height to hit the target. Observe the flight trajectory and velocity vectors in real-time.
LaunchTrace the path from gene to trait. First, copy information from DNA to mRNA (transcription), and then assemble the protein on a ribosome (translation).
LaunchUncover the secret of the 1/3 volume formula. Compare a pyramid with a prism and a cone with a cylinder to visually prove why their volumes relate as one to three.
LaunchSquares on the sides of a right triangle and a rearrangement proof: change the legs and verify that a² + b² = c².
LaunchLink the sign of the discriminant to how many times the parabola meets the x-axis, master Vieta's formulas, and complete the square geometrically.
LaunchExplore the quadratic function. Control the coefficients a, b, and c to observe how the vertex shifts, the shape changes, and the roots of the parabola appear.
LaunchBecome an analytical chemist! Perform qualitative reactions with reagents and identify unknown ions by the color of the precipitate or the smell of the gas.
LaunchMix paint, scale recipes, and read a map scale using ratios and proportions.
LaunchControl chemical collisions! Change temperature, add catalysts, and overcome activation energy barriers to speed up the chemical reaction.
LaunchTrack the invisible exchange! Study oxidation and reduction at the atomic level by observing electron transfer between reactants.
LaunchBuild your own battery! Connect the electrodes and salt bridge, and watch how chemical energy is converted into electrical current.
LaunchUnderstand the idea of integration! Divide the area under a curve into rectangles or trapezoids, increase their number, and observe how the sum approaches the exact integral.
LaunchDrag the angle and watch how sin, cos and tan link the sides of a right triangle — through a ladder, a shadow and a mountain.
LaunchLook inside the atom! Bombard gold foil with alpha particles and observe their scattering to prove the existence of a dense atomic nucleus.
LaunchExplore the regions of the skeleton, bone structure and types of bone joints.
LaunchNavigate by the stars! Explore the celestial sphere, find planets and zodiac constellations using the horizon, ecliptic, and equatorial coordinates.
LaunchLearn to prepare solutions of desired concentration! Mix liquids, perform serial dilutions, and verify calculations using a pipette and volumetric flask.
LaunchExplore the process of dissolving substances in water. Calculate the final concentration when mixing, observe particle diffusion, and see how using a stirrer accelerates homogeneity.
LaunchSee how the world sounds! Change the frequency and amplitude of a sound wave to understand how they determine pitch and loudness.
LaunchLearn the basics of statistics. Add data points, move them around, and observe how the arithmetic mean, median, mode, and outliers react to changes.
LaunchCompare strong and weak electrolytes: watch dissociation at the particle level, test solutions with a light bulb, and see why equal concentrations give different pH.
LaunchDrag the vertices, tear the angles into a 180° sum, build triangles by the SAS, ASA and SSS criteria, and compare angles at parallel lines and a transversal.
LaunchUnlock the secret of trigonometry using the unit circle. Rotate the radius and visually link the angle with sine, cosine, and tangent.
LaunchControl direction and magnitude! Draw vectors, find their coordinates, projections on axes, and master the rules of vector addition and subtraction.
LaunchDiscover how vitamins help our body! Learn their roles (vision, bones, immunity), find main food sources, and practice building a balanced and healthy meal plate.
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