That would be oxidation.
That would be oxidation.
That would be oxidation.
Yes, solution weathering does require water. This type of weathering occurs when minerals are dissolved in water, which chemically reacts with the rock and breaks it down over time. Water plays a crucial role in facilitating the movement of dissolved substances in solution weathering processes.
Mechanical weathering does not require the presence of water. This process involves the physical breakdown of rocks into smaller pieces through factors like temperature changes, frost action, and wind abrasion.
Yes, oxidation is a type of chemical weathering that does require the presence of water to occur. Oxygen in the air combines with minerals in rocks when water is present, leading to the breakdown of those minerals through oxidation.
If you meant weathering that is caused by water; physical weathering is the answer.
The weathering of rock by water is in two forms. One is the physical impact of moving water from rain, outflow, or tides. The other is solution, in which water dissolves minerals in the rock surfaces. Rain and surface water can dissolve gases from the air to form dilute acids that can then chemically react with minerals. This type of erosion can also be seen on stone statues and monuments. The extreme form, which includes dissolved sulfur and nitrogen compounds, is referred to as "acid rain".
Sunlight and wind can cause weathering.
A type of Chemical weathering that happens when water interacts with minerals.
Water causes mechanical and chemical weathering.
Chemical weathering is the type of weathering caused by chemical reactions in water. This process involves the breakdown of rocks and minerals through chemical reactions with water, leading to the alteration of the rock's composition. Examples of chemical weathering processes in water include hydration, hydrolysis, and oxidation.
Physical weathering is a type of weathering in which minerals react with dissolved oxygen in water. This causes chemical changes to take place in the minerals.