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Miller board. Good day Sir.

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Q: What type of stretcher can fit within a Stokes stretcher float with a 250-pound person and can be used in virtually every confined space aboard ship?
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What is stokes line and anti stokes line in Physics?

In physics, Stokes lines and anti-Stokes lines are lines on a Raman spectrum that correspond to low and high energy shifts, respectively, due to inelastic scattering of light. Stokes lines occur at lower frequencies than the incident light, while anti-Stokes lines occur at higher frequencies than the incident light. These shifts provide information about the vibrational modes in a molecule.


In Raman spectra antistock's lines are usually weaker than stock's line?

In Raman spectroscopy, the weaker lines that appear on the higher energy side of the main Stokes peak are known as anti-Stokes lines. These lines are generally less intense than the Stokes lines due to the lower population of molecules in the excited state compared to the ground state at room temperature. Anti-Stokes lines provide valuable information about the energy levels and temperature of the system under study.


What law states that emf is enduced in a loop of wire is proportional to the rate of magnetic flux through the coil?

That is Ampere's law. The emf in a loop is proportional to the rate of change of the magnetic flux.Mathematically Curl E = -dB/dt and the emf comes from applying Stokes's theorem to the surface integral of B.


What is Stoke's law of co-efficient of viscosity?

Stokes's law states that the velocity of a small spherical particle falling through a viscous fluid is directly proportional to the force of gravity and the radius of the particle, and inversely proportional to the viscosity of the fluid. The law is commonly used to calculate the drag force on small particles in a fluid.


What is the settling velocity in specific gravity of the solid particles?

The settling velocity of solid particles in a fluid depends on the size, shape, density difference, and viscosity of the fluid. It can be calculated using Stokes' law, which considers these factors to determine the terminal velocity of a particle settling under gravity in a fluid. The settling velocity increases with increasing density difference and particle size, and decreases with increasing fluid viscosity.