viscosity is inversily change with the conductivity
One relationship is that both can flow in vacuum.
:) It's connected together
Yes and no it madders if the shampoo has a strong enough sent like perfume and you inhale to much its like a drug acept a diffrent affect on your body and that affect is getting high.
The ratio of voltage to current is called resistance. In hydraulic terms, you can equate voltage to the difference in pressure between two points, current with the resulting flow of fluid between those points , and resistance as the opposition to that flow.
Gene flow tends to reduce diffences between populations.
When a liquid is heated, it will generally become less viscous.
Viscous fluid flow occurs when a fluid's viscosity causes resistance to flow, leading to the formation of layers within the fluid. Non-viscous fluid flow, on the other hand, involves a fluid that flows without resistance or layering, typically with low viscosity.
Conductance (G) is a measure of how easily an electric current can flow through a material. It is the reciprocal of resistance (R), with the formula G = 1/R. Conductance is important in electrical engineering and physics as it quantifies the ease with which charges can move through a medium. Higher conductance indicates lower resistance and better electrical conductivity.
The viscosity modulus is a measure of a fluid's resistance to flow. It is related to the flow behavior of fluids because fluids with higher viscosity moduli flow more slowly and are more resistant to deformation. In general, fluids with higher viscosity moduli exhibit more viscous behavior, while fluids with lower viscosity moduli flow more easily and exhibit less viscous behavior.
If conductance decreases, the current flowing through the circuit will also decrease. Conductance is the inverse of resistance, so decreasing conductance means increasing resistance, which impedes the flow of current.
Viscosity denotes opposition to flow.
Viscous fluids are difficult to pour or flow easily because they have high resistance to deformation and flow. This resistance is due to the strong intermolecular forces present in viscous fluids, which make it harder for the molecules to move past each other. As a result, viscous fluids flow slowly and require more force to pour compared to less viscous fluids.
Conductance is the measure of a material's ability to conduct electricity, while conductivity is the measure of how well a material can conduct electricity. Conductance is the reciprocal of resistance, while conductivity is the reciprocal of resistivity. In the context of electrical properties, conductance and conductivity are related in that they both indicate how easily electricity can flow through a material. Conductivity is a fundamental property of a material, while conductance depends on the dimensions and shape of the material.
In a system, the relationship between pressure and flow rate is described by the pressure vs flow rate equation. This equation shows that as pressure increases, flow rate decreases, and vice versa. This means that there is an inverse relationship between pressure and flow rate in a system.
The SI unit of conductance is the siemens (S), named after the German inventor and scientist Werner von Siemens. Conductance is the reciprocal of resistance and is a measure of how easily an electrical current can flow through a material.
Sulfuric acid (H2SO4) is viscous because its molecular structure allows for strong intermolecular forces between particles. These forces create a thick, sticky substance that resists flow, resulting in its viscous nature. Additionally, sulfuric acid has a high density, contributing to its viscosity.
Freud Number is a dimensionless number used in fluid mechanics to represent the ratio between inertial and viscous forces in a flow. It is calculated as the ratio of the inertia force to the viscous force in a fluid flow. It is named after the physicist Ernst Mach.