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below the surface of the earth, as we move deeper towards the core (HEAT's CAUSE) the temperature rises. this rise of temperature with depth is referred to as the geothermal gradient. in most parts of the world that are away from the plate boundaries, with every km depth an increase of 22 degrees Celsius in temperature is observed.

Different areas show different geothermal gradients. in many parts of the world its as high as 30 degrees Celsius per Km and in some its as low as 15 degrees Celsius per Km.

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What is the relationship between underground temperature and depth?

The relationship between underground temperature and depth is that the temperature increases as you go deeper underground. This is because the Earth's core is hot, and heat is transferred from the core to the surface.


What is the relationship between the temperature of the ground and its depth?

The relationship between the temperature of the ground and its depth is that the temperature of the ground decreases as you go deeper into the Earth. This is because the deeper you go, the less influenced the ground is by surface temperature changes and the more it is affected by the Earth's internal heat.


What is the relationship between ground temperature and depth?

The relationship between ground temperature and depth is that the temperature of the ground generally decreases as you go deeper into the Earth. This is because the deeper you go, the less influence surface conditions have on the temperature, and the ground is able to retain heat more effectively.


What is the relationship between soil temperature and depth?

The relationship between soil temperature and depth is that as you go deeper into the soil, the temperature tends to remain more stable and less affected by changes in the surface temperature. This is because the deeper layers of soil are insulated by the layers above them, which helps to regulate the temperature.


What is the relationship between temperature and depth underground?

The relationship between temperature and depth underground is that the temperature generally increases as you go deeper underground. This is because the Earth's interior is hot, and the heat from the Earth's core gradually warms up the surrounding rock and soil as you move deeper underground.

Related Questions

What is the relationship between underground temperature and depth?

The relationship between underground temperature and depth is that the temperature increases as you go deeper underground. This is because the Earth's core is hot, and heat is transferred from the core to the surface.


What is the relationship between the temperature of the ground and its depth?

The relationship between the temperature of the ground and its depth is that the temperature of the ground decreases as you go deeper into the Earth. This is because the deeper you go, the less influenced the ground is by surface temperature changes and the more it is affected by the Earth's internal heat.


What are the relationship between depth and temperature?

the deeper you go, generally the colder it gets


What is the relationship between ground temperature and depth?

The relationship between ground temperature and depth is that the temperature of the ground generally decreases as you go deeper into the Earth. This is because the deeper you go, the less influence surface conditions have on the temperature, and the ground is able to retain heat more effectively.


What is the relationship between soil temperature and depth?

The relationship between soil temperature and depth is that as you go deeper into the soil, the temperature tends to remain more stable and less affected by changes in the surface temperature. This is because the deeper layers of soil are insulated by the layers above them, which helps to regulate the temperature.


Is the relationship between temperature and depth the same as pressure?

No, the relationship between temperature and depth is primarily influenced by factors such as geothermal heat flux and thermal conductivity of the material, while pressure at depth is mainly dependent on the weight of overlying material. Temperature generally increases with depth due to geothermal heating, while pressure increases with depth due to the weight of the material above.


What is the relationship between temperature and depth underground?

The relationship between temperature and depth underground is that the temperature generally increases as you go deeper underground. This is because the Earth's interior is hot, and the heat from the Earth's core gradually warms up the surrounding rock and soil as you move deeper underground.


What is the relationship between a cube and a square?

A relationship that has "depth"?


What is the relationship between earth temperature and depth inside earths?

below the surface of the earth, as we move deeper towards the core (HEAT's CAUSE) the temperature rises. this rise of temperature with depth is referred to as the geothermal gradient. in most parts of the world that are away from the plate boundaries, with every km depth an increase of 22 degrees Celsius in temperature is observed. Different areas show different geothermal gradients. in many parts of the world its as high as 30 degrees Celsius per Km and in some its as low as 15 degrees Celsius per Km.


What is the relationship between depth of focus and earthquake intensity?

7


What is the relationship between water depth an pressure?

The relationship between water depth and pressure is linear. As water depth increases, the pressure exerted by the water also increases. This relationship is described by the hydrostatic pressure formula, which states that pressure is directly proportional to the depth of the fluid and the density of the fluid.


What is the relationship between depth and sunlight?

The relationship between depth and sunlight is that sunlight penetration decreases as depth increases in water. This is due to the absorption and scattering of light by water molecules and particles. Consequently, less sunlight reaches deeper parts of the water column, affecting the availability of light for photosynthesis and primary production.