Its all about the sheer volume of an ice burg compared with the volume of the cup of tea. Although the tea is a lot hotter, some 100'C, the ice burg itself still has heat energy, even below 0'C. That's because its not at absolute zero or -273'C.
Using absolute zero as a base, or degrees Kelvin, the iceberg will be at around 260-270 Kelvin. The tea may be around 360-370 Kelvin, 100 degrees warmer - but this difference is then overwhelmed by the sheer size of the iceberg.
Water takes more energy to heat compared to air because water has a higher specific heat capacity, meaning it requires more energy to raise its temperature. Additionally, water has a higher thermal conductivity compared to air, leading to faster heat transfer.
The cup of water will receive more heat energy compared to the cup of soil because water has a higher specific heat capacity than soil. This means water can absorb more heat for a given temperature change compared to soil.
Humid air holds more heat compared to dry air because water vapor in the air can absorb and retain more heat energy than dry air. This is because water molecules have a higher heat capacity than air molecules, allowing them to store more heat energy.
Aluminum has more thermal energy compared to gold because aluminum has a higher specific heat capacity, meaning it can absorb and retain more heat energy for a given temperature change.
A substance with a higher specific heat can hold more energy because it can absorb or release more heat without changing its temperature significantly. This is because it requires more energy to raise the temperature of a substance with a higher specific heat compared to one with a lower specific heat.
Water takes more energy to heat compared to air because water has a higher specific heat capacity, meaning it requires more energy to raise its temperature. Additionally, water has a higher thermal conductivity compared to air, leading to faster heat transfer.
Water has a higher specific heat capacity compared to pure or drinking alcohol. This means that water can hold more heat energy per unit mass. Therefore, water can absorb and retain more heat energy compared to alcohol.
The cup of water will receive more heat energy compared to the cup of soil because water has a higher specific heat capacity than soil. This means water can absorb more heat for a given temperature change compared to soil.
Humid air holds more heat compared to dry air because water vapor in the air can absorb and retain more heat energy than dry air. This is because water molecules have a higher heat capacity than air molecules, allowing them to store more heat energy.
Aluminum has more thermal energy compared to gold because aluminum has a higher specific heat capacity, meaning it can absorb and retain more heat energy for a given temperature change.
A substance with a higher specific heat can hold more energy because it can absorb or release more heat without changing its temperature significantly. This is because it requires more energy to raise the temperature of a substance with a higher specific heat compared to one with a lower specific heat.
No, a low-energy light bulb generates less heat compared to traditional incandescent light bulbs. This is because low-energy bulbs convert more electricity into light, while incandescent bulbs produce more heat as a byproduct of light generation.
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.
The hot cup has more heat energy because temperature is a measure of the average kinetic energy of particles in an object. The hot cup has higher temperature, meaning its particles are moving faster, and therefore have more heat energy compared to the cold cup.
The heat combustion of paraffin produces less heat energy compared to propane because propane has a higher energy content per unit mass. Propane releases more energy per carbon atom compared to paraffin during combustion, making it a more efficient fuel for heating. Additionally, propane burns cleaner with lower emissions compared to paraffin.
The cup of soil would receive less heat energy compared to the cup of water because soil has a lower heat capacity and thermal conductivity than water. This means that soil would heat up or cool down more slowly than water when exposed to the same amount of heat energy.
Fat contains more caloric energy per unit.