Bell In A Bell Jar Experiment

Category Motions & Forces
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Bell In A Bell Jar Experiment

An ideal solution to the common physics experiment demonstrating that sound will not travel in a vacuum.Place the bell jar on the pump plate, briefly connect the power supply so that the bell can be heard ringing. Connect a vacuum pump to the pump plate and evacuate as much air as possible. Close the valve, switch off the pump and connect the power again. The bell striker moves but can barely be heard. Open the valve slowly, allowing air back in, and the volume of the bell increases.Please note - DC Power Supply and Vacuum pump are not included (See PP00057619 and B8R02971).The apparatus consists of a sturdy metal base plate mounted on a metal tripod.Baseplate Dimensions:Height: 200mmDiameter: 230mmThe bell jar is acrylic and comes complete with an electric bell that requires a suitable d.c. power supply (3 - 6V). Connection to a power supply is made via two 4mm terminals that protrude from the rubber stopper positioned at the top of the bell jar.Bell Jar Dimensions:Height: 260mmDiameter: 180mmOverall mass: 5kg
Category Motions & Forces
An ideal solution to the common physics experiment demonstrating that sound will not travel in a vacuum.Place the bell jar on the pump plate, briefly connect the power supply so that the bell can be heard ringing. Connect a vacuum pump to the pump plate and evacuate as much air as possible. Close the valve, switch off the pump and connect the power again. The bell striker moves but can barely be heard. Open the valve slowly, allowing air back in, and the volume of the bell increases.Please note - DC Power Supply and Vacuum pump are not included (See PP00057619 and B8R02971).The apparatus consists of a sturdy metal base plate mounted on a metal tripod.Baseplate Dimensions:Height: 200mmDiameter: 230mmThe bell jar is acrylic and comes complete with an electric bell that requires a suitable d.c. power supply (3 - 6V). Connection to a power supply is made via two 4mm terminals that protrude from the rubber stopper positioned at the top of the bell jar.Bell Jar Dimensions:Height: 260mmDiameter: 180mmOverall mass: 5kg

Specifications

Height

9.99mm

Width

9.99mm

Length

9.99mm

Brand

Findel

Categories

Physics

Category

Motions & Forces

An ideal solution to the common physics experiment demonstrating that sound will not travel in a vacuum.Place the bell jar on the pump plate, briefly connect the power supply so that the bell can be heard ringing. Connect a vacuum pump to the pump plate and evacuate as much air as possible. Close the valve, switch off the pump and connect the power again. The bell striker moves but can barely be heard. Open the valve slowly, allowing air back in, and the volume of the bell increases.Please note - DC Power Supply and Vacuum pump are not included (See PP00057619 and B8R02971).The apparatus consists of a sturdy metal base plate mounted on a metal tripod.Baseplate Dimensions:Height: 200mmDiameter: 230mmThe bell jar is acrylic and comes complete with an electric bell that requires a suitable d.c. power supply (3 - 6V). Connection to a power supply is made via two 4mm terminals that protrude from the rubber stopper positioned at the top of the bell jar.Bell Jar Dimensions:Height: 260mmDiameter: 180mmOverall mass: 5kg

Specifications

Height

9.99mm

Width

9.99mm

Length

9.99mm

Brand

Findel

Categories

Physics

Category

Motions & Forces

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