Explore molecular structures in 3D with intuitive gestures and customizable visualizations.
The app allows users to view and manipulate 3D molecular structures. It supports multiple visualization modes and file sharing options for molecular data.
by Brad Larson★ 3.6168 ratingsEducationFreeData updated 2026-09-09
Calculate molecular weights for nucleic acid, protein, and peptide sequences. Input sequences via text or copy-paste. Access one- or three-letter amino acid codes. Estimate molecular weights based on sequence length and average molecular weights.
Visualize music, interact with art, play creatively
Create dynamic visual displays with kinetic animations and interactive elements. Explore themes like fireworks, auroras, and atomic symbols. Adjust colors, speeds, and patterns. Share visuals on social media.
Explore molecular geometry using . Learn why molecules like CO₂ and HCN are linear while H₂O and SO₂ are bent. Compare bond angles and electron pair arrangements. Visualize molecular shapes and understand repulsion effects.
Live camera feeds from multiple locations on mobile devices. Add and manage cameras easily. Watch multiple channels simultaneously. Access recorded videos and images locally. Use two-way audio to communicate remotely.
Users can view TTE recordings for 20 cardiac and interact with corresponding 3D heart models. Rotate and adjust 3D models to visualize cardiac structures. Annotate and compare images with reference guidelines.
Explore anatomy with interactive 3D models. Rotate and slice through high-resolution structures. View fiber tracts from MRI data. Learn about function and structure with detailed visualizations.
Explore mathematical concepts through interactive animations. Manipulate geometric shapes and patterns to create visual art. Discover relationships between variables and observe transformations in real time. Save and share generated images.
Naming and writing formulas for ionic and molecular compounds, acids, bases, polyatomic ions, hydrocarbons, and organic functional groups. Choose between -to-name or name-to- exercises. Track progress and repeat exercises for reinforcement.
Explore atomic and molecular behavior in liquids, solids, and gases. Manipulate simulations to observe particle interactions. Visualize physics concepts through interactive models. Share findings and collaborate on research projects.
Locate diamond veins near coordinates to improve mining efficiency. ores and resources like iron and ancient debris. Identify structures and biomes based on world seed. Provide accurate and up-to-date location data for exploration.
View TEE recordings for 20 diagnostic and corresponding 3D heart models. See TEE probe position and ultrasound plane alignment. Assess cardiac function through interactive visualizations.
Explore a dynamic, interactive environment where body gestures shape the surrounding . Navigate through a grid of tesseracts. Adjust spatial structures with movement. View a continuously evolving 3D world.