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Hoochie [10]
3 years ago
6

For two 0.3-m-long rotating concentric cylinders, the velocity distribution is given by u(r) = 0.4/r-1000r m/s. If the diameters

of the cylinders are 2cm and 4cm, respectively, calculate the fluid viscosity when the inner cylinder rotates at 500 rpm at 1W.
Physics
1 answer:
scoundrel [369]3 years ago
5 0

Answer:

viscosity = 0.051725 N/m-s

Explanation:

Given data

diameter = 0.3 m

u(r) = 0.4/r - 1000r m/s

diameter d1 = 2 cm = 0.02 m

diameter d2 = 4 cm = 0.04 m

rotation = 500 rpm

power = 1 w

to find out

fluid viscosity

solution

we have given

u(r) = 0.4/r - 1000r m/s

du/dr = -0.4/r² + 1000

here r = 0.3 /2 = 0.01 m

du /dr =  -0.4/(0.01)² + 1000

du/dr = 5000

and

so velocity is

force = viscosity  ( 2π×r×L) du/dr

0.026 / 0.02  = viscosity  ( 2π× 0.02×0.04) 5000

viscosity = 0.051725 N/m-s

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If a car has a mass of 200 kg and produces a force of 500 N how fast was the car accelerate
Crank

Answer:

2.5

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An electron and a proton each have a thermal kinetic energy of 3kBT/2. Calculate the de Broglie wavelength of each particle at a
IgorLugansk [536]

Answer:

The de Broglie wavelength of electron βe = 2.443422 × 10⁻⁹ m

The de Broglie wavelength of proton βp = 5.70 × 10⁻¹¹ m

Explanation:

Thermal kinetic energy of electron or proton = KE

∴ KE = 3kbT/2

given that; kb = 1.38 x 10⁻²³ J/K , T = 1950 K

so we substitute

KE = ( 3 × 1.38 x 10⁻²³ × 1950 ) / 2

kE = 4.0365 × 10⁻²⁰ (  is the kinetic energy for both electron and proton at temperature T )

Now we know that

mass of electron M'e = 9.109 ×  10⁻³¹

mass of proton M'p = 1.6726 ×  10⁻²⁷

We also know that

KE = p₂ / 2m

from the equation, p = √ (2mKE)

{ p is momentum, m is mass }

de Broglie wavelength = β

so β = h / p = h / √ (2mKE)

h = Planck's constant = 6.626 ×  10⁻³⁴

∴ βe =  h / √ (2m'e × KE)

βe = 6.626 ×  10⁻³⁴ / √ (2 × 9.109 ×  10⁻³¹ × 4.0365 × 10⁻²⁰ )

βe = 6.626 ×  10⁻³⁴ / √  7.3536957 × 10⁻⁵⁰

βe = 6.626 × 10⁻³⁴  / 2.71176984642871 × 10⁻²⁵

βe = 2.443422 × 10⁻⁹ m

βp =  h / √ (2m'p ×KE)

βp = 6.626 ×  10⁻³⁴ / √ (2 × 1.6726 ×  10⁻²⁷ × 4.0365 × 10⁻²⁰ )

βp = 6.626 ×  10⁻³⁴ / √ 1.35028998 × 10⁻⁴⁶

βp =  6.626 ×  10⁻³⁴ / 1.16201978468527 ×  10⁻²³

βp = 5.702140 × 10⁻¹¹ m

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3 years ago
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<span><span>Department of Highway Safety and Motor Vehicles          OR</span></span>

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6 0
4 years ago
When a car accelerates from a standing start, the crash test dummy appears to be pressed backward into the seat cushion. Which o
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<u>Answer:</u>

Option: D. Gravity is pulling the crash test dummy in the direction the car is moving.

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