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The ability of a stream to erode and transport material depends largely on what?

The ability of a stream to erode and transport material largely depends on its discharge, velocity, gradient, and the size and shape of the sediments. These factors influence how much sediment a stream can carry and how effectively it can erode material from its surroundings.


What are some ways in which a stream carries material?

A stream carries material through processes such as suspension, where smaller particles are held aloft in the water; bed load, where larger sediment like gravel and sand rolls or bounces along the streambed; and solution, where dissolved minerals are transported within the water. The stream's velocity and turbulence influence how much material it can carry and the types of sediment it transports. As the stream flows, it can erode the banks and bed, contributing to the overall movement of materials.


What happens when the speed of a stream increases?

Things that would cause a stream to move faster would be how large the stream is, how much material is in the stream and how much of a slope the stream is at. Things blocking the stream would also cause it to move slower.


What will erode earth material faster regular water or salt water?

Salt water will erode earth material faster than regular water due to its higher salinity and chemical composition, which increases its corrosive properties. Salt water can accelerate the weathering and breakdown of rocks and minerals through chemical reactions, leading to faster erosion compared to regular water.


What is load and how does it affect erosion?

Stream Load is the amount of material a stream can hold as it flows. As a stream flows it causes erosion, and this erosion is carried about as material in the stream. As too much is eroded, the extra material will fall to the bottom, or push it's way to the sides.


What factor determines how much a particular color refracts as is passes through a prism?

The refractive index of the material the prism is made of determines how much a particular color refracts as it passes through the prism. Different colors of light have different wavelengths, which causes them to refract at slightly different angles due to the material's refractive index.


What factor determines how much a particular color refracts as it passes through a prism?

The refractive index of the material the prism is made of is the main factor that determines how much a particular color refracts as it passes through a prism. Different colors of light have different wavelengths, which interact differently with the material's refractive index, causing them to bend by different amounts.


What Besides gradient and load what else affects stream?

Flow velocity..answer 2 Sometimes the rock type in a stream basin is not uniform. e,g, there could be a volcanic sill in the catchment. In this case, the harder volcanic material could cut through the bed material much faster than if it were uniform.


What does the jet stream have to do with the volcanic eruption in iceland?

The material ejected by the Eyjafjallajökull volcano was sent so high into the atmosphere - that the jet stream 'caught' the ash particles - spreading them over a much wider area than a 'normal' eruption.


What tells how much a ray of light will bend as it travels through a given matrial?

The refractive index of a material determines how much a ray of light will bend when it travels through that material. The higher the refractive index, the more the light will bend. This bending of light is known as refraction.


How does a stream carry materials?

A stream carries materials through a process called erosion, where water and sediments are transported downstream. The flow of water in a stream can dislodge and carry rocks, soil, and other debris, along with any pollutants present, to be deposited in another location. The speed and volume of water in a stream can impact how much material it can carry.


The measure of how much a ray of light bends when it enter the material?

The measure of how much a ray of light bends when it enters a material is known as the refractive index. This property determines how much light is slowed down and redirected as it passes through the material, affecting phenomena such as reflection and the formation of images. Different materials have different refractive indices, which influences their optical behavior.