"Fluids"
Hand Pump with Vacuum Plate
Efficient combination of a pump and a vacuum plate.
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Displacement Vessel
A perfect tool for studying density, specific gravity, and water displacement. The 250mL polypropylene overflow can with spout only requires a catch bucket for the overflow.
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Four in One Hydraulic Kit
The Four-in One-Hydraulic Kit can carry things like a glass of milk, toys, and other fun items.
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Collapsible Metal
Dramtically demonstrate the power of atmospheric pressure
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Bell Jar and Vacuum Activity Set
The demonstrations feature the fundamentals of vacuum and air pressure as they describe how a pump works and how to find the mass and density of an air sample.
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Deluxe Hydraulic Class Pack
This easy-to-build hydraulic arm demonstrates the power of fluid dynamics.
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Hare's Apparatus
Mounted on a wooden stand with a scale, the apparatus is comprised of a three-limbed glass tube with rubber tubing on the center.
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Gas Law with Temperature Gauge
All in one unit for studying pressure, temperature and volume of a gas and to demonstrate the relationship between them.
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Hydraulic Press
Consists of two interconnected cylinders of different diameters based upon two graduated glass syringes of 10mL and 50mL, with cross-sectional area of 3 to 1.
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CENCO® AP Physics Lab 1.15: Archimedes Principle and Buoyancy
Draw connections between the displacement method for determining density and the bouyant force.
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CENCO® AP Physics Lab 1.14: Fluid Dynamics
Use Bernoulli’s Principle to predict the landing spot of a stream of water leaking from a bucket.
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Pascal's Law Apparatus
Mounted on molded plastic base, the unit consists of a base into the top of which may be screwed one of a set of four vases of differing shapes. An aperture in the bottom has a thin rubber diaphragm across it, bearing upon the short arm of the lever pointer. A moveable index on the vertical rod enables the height of water in vases to be set at same level. The apparatus is mounted on moulded plastic base that measures 25 x 17.5cm. The experiment is performed by screwing in each vase, in turn, and filling with water to the same level. It will be seen that the given height of water will result in the same deflection of pointer whatever shape of the vase.




