Evaporation will be quicker from a larger surface area of liquid compared to a smaller surface area. This is because a larger surface area allows more molecules to escape into the air at any given time, increasing the rate of evaporation. Additionally, with more exposed surface area, there is often more exposure to air movement, which can enhance the evaporation process.
Cell have a greater surface area to volume rations than a larger cell.
the larger the surface area you have, to more heat that you are going to lose.
They grow
Surface area = 4*pi*112 = 1520.531 cm2 rounded to 3 d.p.
Powder typically has a larger surface area compared to lumps because the fine particles in powder allow for more surface area to be exposed. This increased surface area can be advantageous for processes like absorption or dissolution.
As a cell grows larger, its volume increases faster than its surface area, leading to a decrease in the surface area-to-volume ratio. This can limit the cell's ability to efficiently exchange materials with its environment, affecting its overall functioning.
Cell have a greater surface area to volume rations than a larger cell.
the larger the surface area you have, to more heat that you are going to lose.
The larger the area the faster the evaporation.
The answer to that question me friend is research :)
The larger the surface area the more pressure can be spread out, therefore it is less likely to fall through the snow. As pressure = f / a.
They grow
Surface area = 4*pi*112 = 1520.531 cm2 rounded to 3 d.p.
Yes, surface area can affect static friction. Generally, larger surface area will result in greater static friction because there is a larger area for interlocking between the surfaces, increasing the resistance to sliding.
Any surface which is wrinkled has a larger surface area than the space it actually takes up.
because it has the surface area of volume