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While the boiling water is at a higher temperature, the iceberg contains significantly more thermal energy due to its larger mass. The iceberg has stored more heat energy to maintain its frozen state, whereas the boiling water is closer to its boiling point but has less overall energy.

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Which contains more heat an iceberg or a pot of boiling water?

"More temperature" is incorrect grammar. A pot of boiling water (probably; it depends on the pressure) has a highertemperature than an iceberg, if that's what you were trying to ask. However, unless it's quite small, the iceberg likely has more heat energy simply by virtue of having a much larger volume.


Which has more heat an iceberg of a pot of boiling water?

Iceberg.Heat is anything above absolute zero (-273 degrees C).It is the total energy of molecular motion in a substance while temperature is a measure of the average energy of molecular motion in a substance. Heat energy depends on the speed of the particles, the number of particles (the size or mass), and the type of particles in an object. Temperature does not depend on the size or type of object. For example, the temperature of a small cup of water might be the same as the temperature of a large tub of water, but the tub of water has more heat because it has more water and thus more total thermal energy.The iceberg is a huge object with a lot of mass or volume than a pot of water.Therefore due to the massive size of the iceberg the amount of heat (even though it is not as 'hot' as the boiling water) is greater.


Does an icebreg have more or less heat than a pan of boiling water?

A pan of boiling water has more heat energy than an iceberg. This is because the water in the pan is at a much higher temperature compared to the ice in the iceberg. Heat energy is directly related to temperature - the higher the temperature, the more heat energy an object has.


What has more heat energy an iceberg or hot tea?

It surely depends on how big the iceberg is ,as a really big iceberg contains a lot of thermal energy and much more than a liter of hot water.


Does larger mass of water have different boiling temperature?

No. A large mass of water will have the same boiling point as a smaller mass of water. Differences in pressure, however, will cause differences in boiling point. - - - - - It takes longer to boil a large amount of water than a small amount because it takes longer to heat it up.

Related Questions

Can a large iceberg have more heat than a cup of boiling water?

No, a large iceberg contains much less heat energy compared to a cup of boiling water. The heat required to raise the temperature of an iceberg even slightly is much larger than that needed to reach boiling point for a cup of water.


Which contains more heat thermal energy an iceberg or a port of boiling water?

A pot of boiling water contains more heat energy than an iceberg because the water in the pot is at a higher temperature than the ice in the iceberg. Heat energy is directly related to temperature, so the higher the temperature, the more heat energy an object contains.


Which contains more heat an iceberg or a pot of boiling water?

"More temperature" is incorrect grammar. A pot of boiling water (probably; it depends on the pressure) has a highertemperature than an iceberg, if that's what you were trying to ask. However, unless it's quite small, the iceberg likely has more heat energy simply by virtue of having a much larger volume.


Which has more heat an iceberg of a pot of boiling water?

Iceberg.Heat is anything above absolute zero (-273 degrees C).It is the total energy of molecular motion in a substance while temperature is a measure of the average energy of molecular motion in a substance. Heat energy depends on the speed of the particles, the number of particles (the size or mass), and the type of particles in an object. Temperature does not depend on the size or type of object. For example, the temperature of a small cup of water might be the same as the temperature of a large tub of water, but the tub of water has more heat because it has more water and thus more total thermal energy.The iceberg is a huge object with a lot of mass or volume than a pot of water.Therefore due to the massive size of the iceberg the amount of heat (even though it is not as 'hot' as the boiling water) is greater.


Which pot contains more heat a large pot or small pot of boiling water?

Pea


Does an iceberg contain more water than an ocean or does an ocean contain more water than an iceberg?

The ocean contains more water ! An iceberg can be as small as a car - or as big as a city.


Does an icebreg have more or less heat than a pan of boiling water?

A pan of boiling water has more heat energy than an iceberg. This is because the water in the pan is at a much higher temperature compared to the ice in the iceberg. Heat energy is directly related to temperature - the higher the temperature, the more heat energy an object has.


A student measures the boiling point of rainwater and sea water.Which has the higher boiling point?

Sea water has higher boiling point,as it contains sodium chloride


Why is the boiling point of ocean water higher than the boiling point of tap water?

Ocean water has a higher boiling point than tap water because it contains dissolved minerals and salts, such as sodium and chloride. These impurities increase the boiling point of the water by elevating the boiling point of the solution as a whole.


What has more heat energy an iceberg or hot tea?

It surely depends on how big the iceberg is ,as a really big iceberg contains a lot of thermal energy and much more than a liter of hot water.


Is an iceberg renewable?

An iceberg is a very large chunk of frozen water (ice). Eventually it melts into the ocean. The water from which it was oeriginally made fell as snow hundreds of thousands of years ago. So an iceberg is renewable from the Earth's general stock of water, but it takes a long time.


Which do you think contains more internal energy a teaspoon of boiling water or a pan full of water at 50 C?

A teaspoon of boiling water contains more internal energy than a pan full of water at 50 C.