Between points b and c, the temperature of the material increases while the density decreases. This is because the material absorbs heat energy, causing the particles to move faster and spread out, leading to a decrease in density.
The temperature intensity of the material decreases between points D and A. This is because heat is transferring from the higher temperature point (D) to the lower temperature point (A) through the material, causing it to cool down.
Changing the size of a material does not affect its density. Density is a characteristic property of a material that remains the same regardless of its size or shape. Density is calculated by dividing the mass of a material by its volume.
When things get hot, their density typically decreases. This is because the heat causes molecules to move faster, increasing the space between them and therefore reducing the overall density of the material.
In a current, the hotter material tends to rise while the cooler material sinks. This is due to the difference in density caused by the variation in temperature. This movement of materials helps transfer heat and redistribute energy in the system.
As depth increases, density tends to increase as well. This is because the pressure at greater depths compresses the material, making it more tightly packed and thus more dense. In fluids, such as water, the increase in density with depth is also influenced by the temperature gradient.
The answer is a cuz ais closer.
Because its closer to the mantle and the core.
The answer depends on where points b and c are!
When the material gets closer to the core it gets hotter and more dense.
Its temperature rises. As 40C is the temperature where water has its maximum density, then the density will drop as well
As you go deeper into the Earth, both temperature and density increase. The increase in temperature is due to the Earth's molten core and radioactive decay in the mantle. Density increases because of the weight of the overlying rock pushing down on the material below.
Because its closer to the mantle and the core.
The temperature intensity of the material decreases between points D and A. This is because heat is transferring from the higher temperature point (D) to the lower temperature point (A) through the material, causing it to cool down.
Changing the size of a material does not affect its density. Density is a characteristic property of a material that remains the same regardless of its size or shape. Density is calculated by dividing the mass of a material by its volume.
Raising the temperature the density is lowered.
Higher the temperature the lower the density
When things get hot, their density typically decreases. This is because the heat causes molecules to move faster, increasing the space between them and therefore reducing the overall density of the material.