Learn maths and science the visual way. Build, rotate and play with these interactive 3D models — made by PlutusSTEM for IIT-JEE aspirants and school students of Classes 7 to 10. Free to use.
Alpha-particle scattering and the discovery of the nucleus — Rutherford’s gold foil experiment in 3D.
Open in 3D →Atomic structure, electron energy levels and orbital hybridization — explore the Bohr model and hybridization in interactive 3D.
Open in 3D →Discovery of the electron — the cathode ray tube experiment in 3D.
Open in 3D →Properties, congruence and theorems of triangles — explored interactively.
Open in 3D →Build and explore quadrilaterals and all their properties.
Open in 3D →Orbital hybridization and molecular geometry — explore sp, sp² and sp³ hybridization in interactive 3D.
Open in 3D →Predict and visualise molecular shapes with VSEPR theory in interactive 3D.
Open in 3D →Redox reactions, electrode potentials and cell construction — explore the electrochemical cell in interactive 3D.
Open in 3D →How fuel cells convert chemical energy into electricity — explore a working fuel cell in interactive 3D.
Open in 3D →Explore the structure and organelles of plant and animal cells in interactive 3D.
Open in 3D →How chloroplasts capture light and drive photosynthesis — explore the process in interactive 3D.
Open in 3D →DNA structure, chromosome packaging and mitosis/meiosis — explore cell division in interactive 3D.
Open in 3D →Reproductive anatomy and the process of fertilization — explore in interactive 3D.
Open in 3D →Explore electric field, electric dipole and field patterns through an interactive 3D model.
Open in 3D →Explore image formation by spherical mirrors and lenses through an interactive 3D model.
Open in 3D →Explore different types of batteries, their structure, working principles and electrochemical processes through an interactive 3D lab.
Open in 3D →Explore Earth's magnetic field and understand how the magnetosphere shields our planet from solar wind and charged particles.
Open in 3D →Explore different types of isomerism and understand molecular structures through an interactive 3D chemistry lab.
Open in 3D →Explore points, lines, planes and coordinate geometry concepts through an interactive 3D learning experience.
Open in 3D →Explore the shapes and orientations of atomic orbitals, including s, p, d and other orbital structures in interactive 3D.
Open in 3D →Explore benzene's aromatic structure, resonance and electron delocalization through an interactive 3D learning experience.
Open in 3D →Explore the Carnot cycle, heat engine processes and thermodynamic efficiency through an interactive 3D learning experience.
Open in 3D →Explore circles, ellipses, parabolas and hyperbolas as sections of a cone through an interactive 3D learning experience.
Open in 3D →Explore coordination compounds, molecular geometries and different types of isomerism through an interactive 3D learning experience.
Open in 3D →Explore crystal structures, lattice arrangements and unit cells through an interactive 3D learning experience.
Open in 3D →Explore electric fields, electric dipoles, field lines and their behaviour through an interactive 3D learning experience.
Open in 3D →Explore electromagnetic waves, their propagation and the relationship between electric and magnetic fields through 3D.
Open in 3D →Explore how enzymes interact with substrates through the induced-fit mechanism in an interactive 3D learning experience.
Open in 3D →Explore electromagnetic induction and understand Faraday's Law and Lenz's Law through an interactive 3D learning experience.
Open in 3D →Explore the process of double fertilisation in flowering plants and understand the formation of zygote and endosperm through 3D.
Open in 3D →Explore the organs and processes involved in human digestion, from ingestion to absorption, through an interactive 3D model.
Open in 3D →Explore the structure of the human eye and understand common vision defects such as myopia and hypermetropia through 3D.
Open in 3D →Explore the structure of the human heart and understand the pathway of blood circulation through an interactive 3D model.
Open in 3D →Explore the motion of gas particles and understand pressure, temperature and molecular motion through an interactive 3D model.
Open in 3D →Explore magnetic field lines around a bar magnet and solenoid and understand their magnetic behaviour through interactive 3D.
Open in 3D →Explore molecular orbitals, bonding and antibonding orbitals, electron distribution and molecular stability through interactive 3D.
Open in 3D →Explore moment of inertia, mass distribution and rotational motion through an interactive 3D learning experience.
Open in 3D →Explore the structure of the nephron and understand filtration, reabsorption and urine formation through an interactive 3D model.
Open in 3D →Explore how neurons transmit signals and how communication occurs across synapses through an interactive 3D learning experience.
Open in 3D →Explore nuclear fission and fusion processes and understand how nuclear energy is produced through an interactive 3D model.
Open in 3D →Explore chirality, optical isomers and stereochemical structures through an interactive 3D learning experience.
Open in 3D →Explore the PN junction, depletion region, forward and reverse biasing, and diode characteristics through an interactive 3D model.
Open in 3D →Explore how genetic information is transcribed from DNA into RNA and translated into proteins through an interactive 3D model.
Open in 3D →Explore the human respiratory system and understand how oxygen and carbon dioxide are exchanged through an interactive 3D model.
Open in 3D →Explore oscillatory motion using springs and pendulums and understand amplitude, time period and frequency through interactive 3D.
Open in 3D →Explore SN1 and SN2 reaction mechanisms and understand stereochemistry and Walden inversion through interactive 3D.
Open in 3D →Explore 3D shapes, surface area and volume of solids through an interactive 3D learning experience.
Open in 3D →Explore how 2D curves generate 3D solids through rotation and understand their shapes, surface area and volume interactively.
Open in 3D →Explore the working of a BJT transistor as an amplifier and electronic switch through an interactive 3D model.
Open in 3D →Explore vectors, their operations, magnitude, direction and 3D geometric relationships through an interactive 3D model.
Open in 3D →Explore the interference of light waves in Young's double-slit experiment and understand fringe formation through interactive 3D.
Open in 3D →