Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Loschmidt's Paradox

For Students 9th - 10th
Use this simulation to observe how Loschmidt's Paradox affects the entropy of an isolated system.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Barometric Formula

For Students 9th - 10th
Adjust the altitude and temperature in this simulation to observe how gas pressure is affected by these changes.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: States of Matter

For Students 9th - 10th
Change variables in this simulation to see how compression affects different states of matter.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Stereochemistry of Ethane

For Students 9th - 10th
View a 3D molecular model of ethane and see how changing temperature affects its movement.
Unit Plan
Concord Consortium

Concord Consortium: Molecular Workbench: Molecular Crystals

For Students 9th - 10th
A collection of interactive simulations relating to molecular crystals.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Atomic Orbitals

For Students 9th - 10th
View the approximate locations of electrons in valence shells 1s through 4f.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Molecular Orbitals of Benzene

For Students 9th - 10th
Adjust variables to see numerous configurations of the electron orbitals of Benzene.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Dissolving Salt in Water

For Students 9th - 10th
View this simulation to see salt dissolve in water at the molecular level.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Water and Polar Substances

For Students 9th - 10th
Adjust amounts of ionic charges in this simulation to see how water molecules react to polar substances in solution.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Collision Theory of Chemical Reactions

For Students 9th - 10th
Watch an animation of atoms and molecules colliding that shows how these particles combine during chemical reactions. Change levels of energy to see how reactions are affected.
Unit Plan
Concord Consortium

Concord Consortium: Molecular Workbench: How Chemical Reactions Happen

For Students 9th - 10th
View this collection of simulations to gain a better understanding of how chemical reactions happen.
Interactive
Concord Consortium

The Concord Consortium: Molecular Workbench: Seeing Chemical Equilibrium

For Students 9th - 10th
Observe a visual representation of the equilibrium of products and reactants in chemical reactions. Record data while the reactions are taking place and print out a report afterwards.
Interactive
Concord Consortium

The Concord Consortium: Molecular Workbench: Explosions

For Students 9th - 10th
Observe an explosion on a molecular level. Understand how explosions can do work.
Interactive
Concord Consortium

The Concord Consortium: Molecular Workbench: Catalyzed Reactions

For Students 9th - 10th
Explore the purpose of catalysts in chemical reactions and how they affect the reaction pathways.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Osmotic Pressure

For Students 9th - 10th
View this simulation to observe the process of smaller particles moving through a semipermeable membrane. Temperature is adjustable. [Must download the simulation to engage in the activity]
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Modeling Dna Hybridization

For Students 9th - 10th
View this simulation of DNA Hybridization.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Experiment on Material Strength

For Students 9th - 10th
Adjust the strength of interatomic interactions in this virtual bullet experiment. Observe how the adjustments in strength affect the material in the experiment.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Shock Wave Propagation

For Students 9th - 10th
Adjust variables in this shock wave propagation simulation. Observe the density and pressure waves.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Sputtering

For Students 9th - 10th
Adjust the incident ion variables in this simulation to observe the sputter yield from the target.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Neon Diffusion in Nanotube

For Students 9th - 10th
Observe the movement of neon atoms in a quadruple nanotube joint.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Nano Differential Gears

For Students 9th - 10th
View a hypothetical model of gears created be intermolecular interactions.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Hypothetical Nanoscale Machine

For Students 9th - 10th
Observe the intermolecular interactions of a hypothetical multi-gear nanoscale machine.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Molecular Sorter

For Students 9th - 10th
Observe the sorting process of a hypothetical nano purification machine.
Interactive
Concord Consortium

Concord Consortium: Molecular Workbench: Sorting Molecules With a Nano Conveyor

For Students 9th - 10th
Observe how molecules can be sorted in a hypothetical nano conveyor-belt mechanism.