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Illusion [34]
4 years ago
5

Consider 3 polarizers. Polarizer 1 has a vertical transmission axis and polarizer 3 has a horizontal transmission axis. Taken to

gether, polarizers 1 and 3 are a pair of crossed polarizers. Polarizer 2, with a transmission axis of 30o to the vertical, is placed between polarizers 1 and 3. What is the intensity of light transmission that these polarizers given an initial intest of light Io?
A. 0.375 Io
B. 0.25 Io
C. 0.18 Io
D. 0.09 Io
E. zero
Physics
1 answer:
kirill [66]4 years ago
7 0

Answer:

Option D.) 0.09 I₀

Explanation:

The intensity, I, of a polarized light after passing through a polarizing filter is given by I = I_{0} cos^{2}  \theta

I_{0} = Original Intensity

\theta = Angle between the direction of polarization and the axis of filter

After passing through the first polarizer, the initial intensity, I_{o} is halved, i.e I_{1} = \frac{I_{0} }{2}

After passing through the second polarizer, the angle of polarization, θ = 30⁰

I_{2} = I_{1} cos^{2} \theta

I_{2} = \frac{I_{0} }{2} cos^{2} 30\\I_{2} =\frac{3}{8} I_{0} \\I_{2} = 0.375 I_{0}

After passing through the third polarizer, the angle of polarization, θ = 90⁰-30⁰ = 60⁰

I_{3} = I_{2} cos^{2} \theta

I_{3} = 0.375I_{0} cos^{2} 60

I_{2} =0.09 I_{0}

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An object is in equilibrium when acted on by three coplanar forces.
andrey2020 [161]

Answer:

A is correct

Explanation:

The vertical force up is balanced by the vertical component of the largest force

The horizontal force to the right is balanced by the horizontal component of the largest force.

C and D will both tend to accelerate upward at some angle

B looks like the horizontal force right is larger than the sum of the horizontal components of the other two forces.

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3 years ago
Different velocity-time graph lines are shown, displaying the behavior of multiple race carts along a linear track.
Studentka2010 [4]

B) Moving with zero acceleration.

Explanation:

Acceleration is defined as the rate of change of the velocity per unit time:

a=\frac{\Delta v}{\Delta t}

In a velocity-time graph, this ratio corresponds to the slope of the curve. In fact:

\Delta v (change in velocity) corresponds to the increase in the y-axis

\Delta t (change in time) corresponds to the increase in the x-axis

So, acceleration corresponds to the slope of the curve in a velocity-time graph. For cart C, the slope is zero, therefore the acceleration is also zero.

8 0
3 years ago
Read 2 more answers
Please help me . i need to answer it asap thankyou​
alex41 [277]

The amount of heat needed to melt the block of lead is 5.4\cdot 10^4 J

Explanation:

The amount of heat needed to melt a solid substance already at its melting point is given by the equation

Q=m \lambda_f

where

m is the mass of the substance

\lambda_f is the specific latent heat of fusion

In this problem, we have a block of lead already at its melting point, 327^{\circ}C. Its mass is

m = 200 g = 0.2 kg

and its specific latent heat of fusion is

\lambda_f = 2.7\cdot 10^5 J/kg

Therefore, the amount of heat needed for the block to completely melt is

Q=(0.2)(2.7\cdot 10^5)=5.4\cdot 10^4 J

Learn more about specific heat:

brainly.com/question/3032746

brainly.com/question/4759369

#LearnwithBrainly

8 0
3 years ago
____________ is the activity performed prior to participating in an activity.
disa [49]
I think its B but it could also be D because usually they say line up and than u do the activity or strech so..



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8 0
4 years ago
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A box of mass m = 1.80 kg is dropped from rest onto a massless, vertical spring with spring constant k = 2.00 ✕ 102 N/m that is
Rudik [331]

Answer:

spring compressed is 0.724 m

Explanation:

given data

mass = 1.80 kg

spring constant k = 2 × 10²  N/m

initial height = 2.25 m

solution

we know from conservation of energy is

mg(h+x)  = 0.5 × k × x²       ...................1

here x is compression in spring

so put here value in equation 1 we get

1.8 × 9.8 × (2.25+x)  = 0.5 × 2× 10² × x²

solve it we get

x = 0.724344

so spring compressed is 0.724 m

3 0
4 years ago
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