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Boyles law apparatus

Original price was: $6,000.00.Current price is: $5,500.00.

The Boyle’s Law apparatus is a laboratory device designed to illustrate the relationship between the pressure and volume of a gas at constant temperature. It typically features a sealed transparent container or cylinder that holds the gas, allowing for visual observation of any changes in volume. Attached to the container is a pressure measurement device, such as a manometer or pressure gauge, which accurately records the gas’s pressure. The apparatus includes a volume adjustment mechanism, often in the form of a movable piston, enabling the user to compress or expand the gas and observe the corresponding pressure changes. Some setups may also incorporate temperature control to maintain constant conditions during experiments. Graduated scales on the apparatus facilitate precise measurements of gas volume. Overall, this apparatus serves as an essential educational tool, providing a hands-on experience for students to explore and understand Boyle’s Law, which states that the pressure of a gas is inversely proportional to its volume

SKU: ACS16412CHEM0 Category:
Description

Uses of Boyles law apparatus

  • Educational Demonstrations:

The apparatus is often used in physics and chemistry classes to visually demonstrate Boyle’s Law, which states that the pressure of a gas is inversely proportional to its volume when temperature is held constant.

  • Measurement of Gas Properties:

It allows for the measurement of changes in pressure and volume of a gas under controlled conditions, helping students and researchers understand gas laws.

  • Calibration of Pressure Gauges:

The apparatus can be used to calibrate pressure measurement devices by providing known values of pressure and volume.

  • Investigating Real Gas Behavior:

It can help study deviations from ideal gas behavior at different pressures and volumes, especially for gases that exhibit non-ideal characteristics.

  • Thermodynamic Studies:

The apparatus can be used in experiments related to thermodynamics to analyze work done by or on gases during expansion or compression.

  • Research Applications:

In research settings, it can be utilized to explore the behavior of various gases under different experimental conditions, aiding in the development of gas-related theories and technologies.

  • Demonstrating Gas Laws:

It is also used to demonstrate other gas laws in combination with Boyle’s Law, providing a comprehensive understanding of gas behavior under various conditions.

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