This lab is designed to have students examine the different relationships that exist for gases in a box.
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This lab is designed to have students examine distribution of speeds for gases in a box.
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This lab is designed to have students look at a greatly simplified version of James Joule's experiment showing the conversion of mechanical energy to heat.
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This environment has been created to allow students to look at how the size of pipes affects the speed and pressure of the fluid moving through the pipe.
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This environment has been created to allow students to look at how some different factors affect the flow rate and exit velocity for water leaving a siphon.
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This environment has been created to allow students to see how larger masses can be balanced or even lifted by smaller masses by designing your system correctly.
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This lab is designed to have students investigate the equilibrium location of a piston that is separating two fluids in a u-tube.
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This lab is designed to have students learn how the size, mass and mass distribution of a pulley influences the rate at which a mass attached to the pulley will accelerate. The pulley is frictionless and the string's mass is negligible.
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This lab is designed to have students look at how the forces needed to support a suspension bridge change as the object moves across the bridge. This lab is intended to be used as a companion to a live lab with similar equipment.
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This lab is designed to have students investigate the energy added to an object when it is moved away from another object. This lab is meant to lay the foundations for the idea of universal gravitational energy. Students will see how the distance moved affects the energy added.
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