it tells you, the higher the viscosity and the thicker the substance is the lower the flow rate hope this helped!:) :) peace
The continuity equation states that in a steady flow, the mass entering a system must equal the mass leaving the system. It expresses the principle of conservation of mass and is used to analyze fluid flow in various engineering applications. The equation is often written in the form of mass flow rate or velocity profile to describe how fluid moves through a system.
There is no way to tell as the rate of flow is only partially influenced by pressure and there are many other contributing factors such as the diameter of a pipe or the viscosity of a liquid.
A capillary rheometer is used so that you can measure the rate of blood flow from your capillaries. Also, you can measure the rate of the blood flow inside of it, which can help you tell whether or not you have a broken one.
A fluid is any substance that flows. Fluids can either be liquid or gases. You can tell whether a liquid is true because they form a flat surface. Fine solid do flow, except they form a heap.
It's still and does not flow, germs, etc have more chance of growing on this fluid, that's why they tell you never to drink out of a still river if your in the wilderness. Happy to Help 'Matt
Bernoulli's Principle states that in a moving fluid, an increase in the fluid's velocity is accompanied by a decrease in its pressure, and vice versa. This means that as the speed of fluid flow increases, the pressure within the fluid decreases. This principle helps explain the lift of an airplane wing and the flow of fluids through pipes of varying diameters.
The lava structures of a'a and pahoehoe indicate the viscosity (resistance to flow) and temperature of the lava as it was erupting. The pahoehoe structures form when the lava is more fluid and hotter and a thin crust is able to congeal before deformation by the heat of the interior of the flow. The a'a structures form when the lava is slightly cooler and less fluid as it travels downslope. A pahoehoe-forming lava can cool and become an a'a lava as it travels downslope, losing heat and becoming more viscous (less fluid). It doesn't so much tell us about the eruption itself as it tells us about the temperature and viscosity of the lava.
Check the owner's manual for specifications and amount. Also, Autozone can tell you what will work. For the viscosity, recommend SAE 90 for most Toyotas.
It will take gear oil found at any automotive store, make sure it is manual tranny oil and not automatic tranny fluid. Check your owners manual and it should tell you what viscosity (weight ,or thickness) the factory recommends to get (example) 80w or 90w. If you don't have an owners manual, pickup a repair manual for your car, which will tell you just about everything about your car.
An air plane wing or anything that reduces drag like an arrow,dart, or even fish. Other examples could be the fins of dolphins, blood through arteries, water in a tube. Just remember that laminar flow is flow in which the fluid flows smoothly without much resistance. The fluid pretty much travels in straight or almost straight lines.
They save lives because they have to try and detect signs of eruptions as soon as possible so they can make people vacate the area as soon as possible. They can also measure the viscosity of the lava. They save lives by using the viscosity test to find out how fast the lava flow is, The temperature changes the viscosity.
Hd