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Eureka can is based on which principle?

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Important Questions on Physical Quantities and Measurement

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Write the quadrants in which the following points lie:

-4,7

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The volume of an irregularly shaped solid can be measured by measuring the volume of water displaced by using a Eureka can.
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What the level of water should be inside the Eureka can while finding the volume of an irregularly shaped body?
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An irregular shaped body is completely immersed in a Eureka can. The water is collected in a graduated beaker and the reading is 60 cm3. The beaker was initially filled to a level of 15 cm3. What is the volume of the immersed body?
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A Eureka can is a container with a spout near its bottom.
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The density of irregular solids can be determined with the help of a Eureka can.
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The drop in the level of water in a measuring cylinder when an object is placed in it gives the volume of the object.
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A _____ is a container with a spout below its top.

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Eureka can is based on which principle?

(Choose from: Archimedes', Newton's, Ohm's)

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A child find the mass of an iron nail to be 7 gram. He then takes 10 such identical nails and gently placed them into a Eureka can filled with water. The water overflows and is collected in a measuring cylinder. The reading noted down from the measuring cylinder is 9 mL. Determine the density of iron nail.
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What is the volume of the irregularly shaped body when completely immersed in the Eureka can, given that the water level in the graduated beaker increased from 15 cm3 to 60 cm3?
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What is the underlying principle of Eureka Can?
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Explain the importance of using calibrated vessels for measuring volume accurately.

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Given that the water level in the graduated beaker went from 25 cm3 to 60 cm3,what is the volume of the irregularly shaped body when fully submerged in the Eureka can?

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How much water should be in the Eureka can when calculating the volume of a body with an irregular shape?
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How is the volume of Eureka related to the level of the liquid up to the spout, and why is this relationship significant in measuring volume accurately?