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Speed is directly proportional to energy in case of Einstein equation.

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14y ago

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Are speed and distance directly proportional or inversely proportional?

Directly proportional. Greater speed - greater distance.


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If you double the speed of centrifugal pump?

Centrifugal pumps generally obey what are known as the pump laws. These laws state that the flow rate or capacity is directly proportional to the pump speed; the discharge head is directly proportional to the square of the pump speed; and the power required by the pump motor is directly proportional to the cube of the pump speed.


Is distance directly or inversely proportional to time?

Distance is directly proportional to time when speed is constant, meaning that the farther you travel, the longer it takes. Conversely, distance is inversely proportional to time when speed varies, such that if you increase speed, you decrease the time it takes to travel a certain distance.


How does distance and time affect the speed from object?

Distance and time do not, in general, affect the speed. Speed, however, can affect distance or time. Distance is directly proportional to speed, time is inversely proportional.


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Neither. The relationship is not that simple.


When the distance travelled by a body is directly proportional to time then it is travelling with?

constant speed.


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What do you notice about the relationship between kinetic energy and speed?

The relationship between kinetic energy and speed is directly proportional, meaning that as speed increases, kinetic energy also increases. This relationship is described by the kinetic energy formula, which states that kinetic energy is directly proportional to the square of the speed of an object.


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How is an electron's wavelength related to its speed and mass?

The wavelength of an electron is inversely proportional to its speed and directly proportional to its mass. This means that as the speed of an electron increases, its wavelength decreases, and as the mass of an electron increases, its wavelength also increases.