Heat
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Heat
Charle’s Law Kit
A glass U-tube of 10 mm diameter the shorter limb of which has a stopcock near top and the longer limb can take a plastic tube. A scale is provided and can be attached to the shorter limb. With red indicator oil but without 2000 ml tall form beaker which acts as a reservoir.
PH20093 -
Heat
Ice Melting Kit
Demonstrates the difference in thermal conductivity of two different materials. The kit consists of two identical blocks, one made of aluminum and other made of plastic. When an ice cube is placed on aluminum it turns into water in seconds, while on plastic block, it melts slowly. The aluminum block has a larger heat capacity and a higher thermal conductivity, while the plastic block has lower values of both parameters. With instructions.
PH20095 -
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Heat
Aneroid Calorimeter
This calorimeter features an advanced insulated outer wall that delivers nearly five times the sensitivity of standard models. The central chamber is made of aluminum and is fully enclosed within a thick Styrofoam insulation layer; all housed inside a strong plastic casing to minimize heat transfer and ensure very low heat loss during experiments. Key features include:
- Aluminum inner chamber for accurate thermal measurement
- Multi-layer insulation with Styrofoam for superior heat retention
- Robust plastic exterior for added durability and reduced heat flow
- Compatibility with specific heat cylinder sets for thermal property studies
Accessories: Density cylinders with hook
PH20178 -
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Heat
Specific Heat Demonstration Set
Unique way to illustrate the different heat capacities of various metals features a slanted panel with four grooves to hold four different metals. Place a sheet of bee’s wax in the front of the pane and submerge the metal samples in hot water. When the metals are placed on the grooves simultaneously they will melt and sink through to different levels based on their specific heat. Includes four metals cylinders: Aluminum, Copper, Lead and Tin; support stand, two pieces of beeswax and instructions.
PH20202

















