I don't have the ability to create or view image. However, I can explain the working of a manometer in words:
A manometer is a device used for measuring pressure, typically in gases or liquids. It consists of a U-shaped tube partially filled with a liquid, such as water or mercury. One end of the tube is open to the atmosphere, while the other end is connected to the system whose pressure is to be measured.
When pressure is applied to the system, it causes the liquid in the tube to move, creating a difference in height between the two sides of the U-tube. The height difference, or "manometer reading," is proportional to the pressure difference between the system and the atmosphere.
The working of a manometer can be explained with the help of the following steps:
1. The manometer is set up with one end of the U-tube open to the atmosphere and the other end connected to the system whose pressure is to be measured.
2. The U-tube is partially filled with a liquid, such as water or mercury.
3. When pressure is applied to the system, it causes the liquid in the tube to move, creating a difference in height between the two sides of the U-tube.
.
4. The manometer reading is obtained by measuring the height difference between the two sides of the U-tube using a ruler or a scale.
5. The manometer reading is proportional to the pressure difference between the system and the atmosphere. The pressure can be calculated using the formula P = ρgh, where P is the pressure, ρ is the density of the liquid, g is the acceleration due to gravity, and h is the height difference between the two sides of the U-tube.
Overall, a manometer is a simple and effective device for measuring pressure in gases or liquids. Its working is based on the principle of hydrostatics, which is the study of fluids at rest.
U-tube manometer features a vertical or inclined U-tube column that is filled with a reference liquid (mercury) to display the pressure level. When the columns of the device are exposed to the atmosphere, the levels of liquid in the limbs are equal and this indicates the atmospheric pressure
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I don't have the ability to create or view image. However, I can explain the working of a manometer in words:
A manometer is a device used for measuring pressure, typically in gases or liquids. It consists of a U-shaped tube partially filled with a liquid, such as water or mercury. One end of the tube is open to the atmosphere, while the other end is connected to the system whose pressure is to be measured.
When pressure is applied to the system, it causes the liquid in the tube to move, creating a difference in height between the two sides of the U-tube. The height difference, or "manometer reading," is proportional to the pressure difference between the system and the atmosphere.
The working of a manometer can be explained with the help of the following steps:
1. The manometer is set up with one end of the U-tube open to the atmosphere and the other end connected to the system whose pressure is to be measured.
2. The U-tube is partially filled with a liquid, such as water or mercury.
3. When pressure is applied to the system, it causes the liquid in the tube to move, creating a difference in height between the two sides of the U-tube.
.
4. The manometer reading is obtained by measuring the height difference between the two sides of the U-tube using a ruler or a scale.
5. The manometer reading is proportional to the pressure difference between the system and the atmosphere. The pressure can be calculated using the formula P = ρgh, where P is the pressure, ρ is the density of the liquid, g is the acceleration due to gravity, and h is the height difference between the two sides of the U-tube.
Overall, a manometer is a simple and effective device for measuring pressure in gases or liquids. Its working is based on the principle of hydrostatics, which is the study of fluids at rest.
ANSWER
U-tube manometer features a vertical or inclined U-tube column that is filled with a reference liquid (mercury) to display the pressure level. When the columns of the device are exposed to the atmosphere, the levels of liquid in the limbs are equal and this indicates the atmospheric pressure
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