Ambient Weather WS-TB1071305 is a combined weather station that provides you with both temperature and atmospheric pressure readings. The device consists of two separate instruments - a Galileo thermometer and a glass fluid barometer.
The Galileo thermometer is a fascinating device that uses the principle of buoyancy to measure temperature. It consists of a sealed glass tube filled with a clear liquid and several glass spheres, each containing a different colored liquid. The spheres are weighted with metal tags to give them slightly different densities. As the temperature changes, the liquid in the tube expands or contracts, causing the spheres to float or sink. The temperature is read by observing which sphere is floating at the bottom of the group.
Ambient Weather WS-TB1071305 is a combined weather station that provides you with both temperature and atmospheric pressure readings. The device consists of two separate instruments - a Galileo thermometer and a glass fluid barometer.
The Galileo thermometer is a fascinating device that uses the principle of buoyancy to measure temperature. It consists of a sealed glass tube filled with a clear liquid and several glass spheres, each containing a different colored liquid. The spheres are weighted with metal tags to give them slightly different densities. As the temperature changes, the liquid in the tube expands or contracts, causing the spheres to float or sink. The temperature is read by observing which sphere is floating at the bottom of the group.
Ambient Weather WS-TB1071305 is a combined weather station that provides you with both temperature and atmospheric pressure readings. The device consists of two separate instruments - a Galileo thermometer and a glass fluid barometer.
The Galileo thermometer is a fascinating device that uses the principle of buoyancy to measure temperature. It consists of a sealed glass tube filled with a clear liquid and several glass spheres, each containing a different colored liquid. The spheres are weighted with metal tags to give them slightly different densities. As the temperature changes, the liquid in the tube expands or contracts, causing the spheres to float or sink. The temperature is read by observing which sphere is floating at the bottom of the group.
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