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demonstrations:2_fluid_mechanics:2c_dynamics_of_fluids:bernoulli_theorem:start [2019/02/14 23:33] 127.0.0.1 external edit |
demonstrations:2_fluid_mechanics:2c_dynamics_of_fluids:bernoulli_theorem:start [2020/03/13 20:28] demoroom |
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====== Bernoulli Theorem ====== | ====== Bernoulli Theorem ====== | ||
- | {{tag>hose vacuum needs_review untagged unlocated}} | + | {{tag> fluid_mechanics bernoulli levitation located}} |
<WRAP box right> | <WRAP box right> | ||
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===== Description ===== | ===== Description ===== | ||
- | Demonstrate the Bernoulli Theorem. Classes Used: PHYS 101 | + | Consists simply of the [[demonstrations:9_equipment:reverse_vacuum_cleaner:start|reversed vacuum cleaner]] and a lightweight plastic ball. |
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===== Purpose ===== | ===== Purpose ===== | ||
- | + | Demonstrates the Bernoulli Theorem by using a flow of air to levitate a ball. | |
- | To demonstrate the Bernoulli Theorem. | + | |
- | + | ||
===== Apparatus ===== | ===== Apparatus ===== | ||
- | + | * [[demonstrations:9_equipment:reverse_vacuum_cleaner:start|Reversed vacuum cleaner]] | |
- | Reversed Vacuum | + | * [[demonstrations:9_equipment:balls:start|Plastic Ball]] |
- | Plastic Ball | + | |
- | + | ||
===== Setup ===== | ===== Setup ===== | ||
- | + | - Turn the vacuum on and drop the ball above the nozzle. | |
- | - Turn Vacuum on and drop ball above nozzle | + | - The ball will then remain suspended in air due to the Bernoulli effect. |
- | - Ball will remain suspended in air due to the Bernoulli effect Updated on 06/10/13 | + | |
===== Notes ===== | ===== Notes ===== | ||
+ | A plastic cup attached to the side of the vacuum is used to hold a ball specifically for this demo. If it's missing, we should have more. | ||
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</WRAP> | </WRAP> | ||
<WRAP tablewidth 100%> | <WRAP tablewidth 100%> | ||
- | | **Location** | ---- | | + | | **Location** | U0 | |
| **Maker** | Unknown | | | **Maker** | Unknown | | ||
| **Current State** | Working | | | **Current State** | Working | |