Type your answer here... A substance with high specific heat means it can absorb alot more heat energy before its temperature increases.
A substance with low specific heat cannot absorb alot of heat energy so its temperature increases quickly because it cant absorb the heat.
Remember there is a difference between Heat energy and Temperature. The ocean can absorb alot of heat energy but still feel like its cold in temperature.
The tip of a needle can be at 1000 degrees temperature but there is hardly any actual heat energy in it because its so small.
The substance that heats more slowly than other substances could be water. But this idea is based on the high heat capacity of water. It takes more thermal energy (heat) to elevate the temperature of a given amount of water than an equal amount of another substance. But other substances might heat more slowly than water because heat does not travel "into" or "through" them very well. Different experiments may yield different results.
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Water has a high specific heat capacity because it is a relatively light molecule (18 grams per mole). The specific heats of molecules are all about the same on a per-molecule basis, especially at higher temperatures. This is called the law of Dulong and Petit. At low temperatures, it gets more complicated because the vibrations of molecules are quantized. When specific heats are measured on a per-gram basis, lighter molecules have higher specific heats. For example, the specific heat of hydrogen (H2), which has a molecular weight of 2 grams per mole, is much higher than that of water. Liquid water has a higher specific heat than most other liquids (such as alcohols) because its molecules are lighter.
it heats it up because the room temp is hot cause your bodys hot that's why.
radiant
The ratio of specific heats table provides information about the ratio of the specific heat capacities of different substances. This ratio is important in understanding how substances respond to changes in temperature and energy.
A substance that heats up quickly has a low specific heat capacity, while a substance that heats up slowly has a high specific heat capacity. This is because substances with high specific heat capacities require more energy to change temperature compared to substances with low specific heat capacities.
Water is typically used as the standard against which specific heats are measured. The specific heat capacity of water is 1 calorie/gram °C or 4.18 joules/gram °C, which makes it a convenient reference point for comparing the specific heats of other substances.
Water is the only thing.
The specific heat capacity of a material determines how much energy is needed to heat up a certain mass of the material by a certain amount. Materials with higher specific heats require more energy to raise their temperature compared to materials with lower specific heats. Therefore, materials with higher specific heats will have slower temperature increases when heated compared to materials with lower specific heats.
The substance that heats more slowly than other substances could be water. But this idea is based on the high heat capacity of water. It takes more thermal energy (heat) to elevate the temperature of a given amount of water than an equal amount of another substance. But other substances might heat more slowly than water because heat does not travel "into" or "through" them very well. Different experiments may yield different results.
Sand has a relatively low specific heat capacity compared to other substances. This means that it heats up and cools down quickly when exposed to temperature changes.
When a substance has a low specific heat, it means that it requires less energy to change its temperature compared to substances with higher specific heat. As a result, it heats up and cools down more quickly when energy is added or removed. This property affects how substances respond to temperature changes and can impact various physical and environmental processes.
water
the specific heats of the substances are identical the particels will not react chemically the substances have equal theraml energies the substances have equal temps hop it helped sorry if it didnt
The property is called high specific heat capacity. Water has a high specific heat capacity because it can absorb and release a large amount of heat energy before its temperature changes significantly. This is why water heats and cools slowly compared to other substances.
That property is called high specific heat. Water has a high specific heat compared to many other substances, which means it can absorb and release a large amount of heat energy without its temperature changing significantly.