In a divergent nozzle, pressure will decrease as the flow area increases. This is due to the conservation of mass principle, where an increase in area causes a decrease in velocity and thus a decrease in pressure according to Bernoulli's equation.
An increase in blood pressure, blood volume, or permeability of the filtration barrier would increase net filtration pressure. On the other hand, a decrease in blood pressure, blood volume, or an increase in plasma protein concentration would decrease net filtration pressure.
Increase.
An increase of the temperature or a decrease of the pressure.
An increase in pressure will cause the gas molecules to be compressed closer together, which will increase the frequency of collisions between molecules. This can lead to an increase in temperature and a decrease in volume of the gas.
increase
Increasing the pressure would increase the yield of sulfur trioxide because the reaction involves a decrease in volume. Decreasing the pressure would decrease the yield of sulfur trioxide because the reaction volume would increase.
Pressure increases as you go down.
If the pressure in a fluid is changed, its density is typically affected. In general, an increase in pressure leads to an increase in density, while a decrease in pressure results in a decrease in density.
No, snowshoes help distribute your weight over a larger area, which decreases the amount of pressure you exert on the snow. This prevents you from sinking deep into the snow, making it easier to walk on top of it.
They don't, snowshoes decrease pressure on the snow by distributing the pressure of the foot over a MUCH wider areaof the snow surface, reducing the chance of your breaking through the surface of the snow.
The pressure on the low pressure side of a system is determined by factors such as the volume of the system, the amount of gas present, and the temperature. A decrease in volume or an increase in temperature can lead to an increase in pressure. Conversely, an increase in volume or a decrease in temperature can lead to a decrease in pressure on the low pressure side.