Animal Classification
Explore the animal kingdom. Compare vertebrates and invertebrates, identify classes by key traits (structure, habitat), and test your knowledge in mini-missions.
Witness 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.
This simulation uses a physically accurate engine to calculate real-time interactions based on established scientific principles. It allows you to visualize phenomena that are typically invisible or happen too fast or too slow to observe in a traditional classroom setting.
This interactive STEM simulation lets you study the process visually by adjusting parameters and observing results in real time. Launch the model and experiment with settings to see how different variables affect the outcome.
The simulation content is available immediately once launched: the interactive model loads in your browser and requires no additional software.
These concepts underpin medicine, ecology, biotechnology, and agriculture.
This simulation is designed for middle and high school students, teachers, and anyone interested in STEM education.
Yes, this interactive simulation is available for free educational use.
Absolutely! Our simulations are fully optimized for both desktop and mobile browsers.
Explore the animal kingdom. Compare vertebrates and invertebrates, identify classes by key traits (structure, habitat), and test your knowledge in mini-missions.
Compare protozoa to arthropods; parasites and prevention in Kyrgyzstan context.
Compare tomato and rabbit breeding. Choose parents by inherited traits, produce varied offspring, and stabilize useful qualities over generations.
Compare bacteria, fungi, and lichens: structure and roles.
Explore the biosphere, matter fluxes, and consequences of human decisions.
Distinguish PCR, recombinant-DNA assembly, CRISPR-Cas9 and cell culture; trace bioproduct pathways and responsible decisions.
Trace 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.
Follow 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.