Question

Snell’s law can tell the refracting angle if we know a. The index of refraction for...

Snell’s law can tell the refracting angle if we know

a.

The index of refraction for the medium Light rays enter

b.

The index of refraction for the medium Light rays emerge

c.

The angle of incidence

d.

All of the above

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Snell's law states that :

n1sin(i) = n2​​​​​​sin(r)

So, to know the refracting angle, we have to know all the given(in option) things.

Hope it helps.

Add a comment
Know the answer?
Add Answer to:
Snell’s law can tell the refracting angle if we know a. The index of refraction for...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Snell's law can be used to solve for the index of refraction of a medium if...

    Snell's law can be used to solve for the index of refraction of a medium if the _____ is known. angle of incidence angle of refraction index of refraction of the other medium All of the above . Total internal reflection occurs when the angle of incidence is _____ the critical angle. greater than equal to greater than or equal to None of the above When the slope of a graph is the index of refraction for a material and...

  • The angle of Incidence in medium 1 is 38degree The index of refraction of medium 1...

    The angle of Incidence in medium 1 is 38degree The index of refraction of medium 1 Is 1 and the index of refraction of medium 2 is 1.5. The wave length of incident light is 450nm.The velocity of light wave in medium 1 is 3 x 10* m/s calculate the angle of refraction the frequency of light m medium 2

  • White light is incident on a block of glass that has index of refraction n =...

    White light is incident on a block of glass that has index of refraction n = 1.816 for violet light and n = 1.800 for red light. The thickness of the block is L = 42 cm. If the angle of incidence is 39 degrees, what is the distance x between the violet and red rays when they emerge from the glass? Take the index of refraction of air to be 1.00. - L Answer: Check

  • White light is incident on a block of glass that has index of refraction n =...

    White light is incident on a block of glass that has index of refraction n = 1.816 for violet light and n = 1.800 for red light. The thickness of the block is L = 29 cm. If the angle of incidence is 30 degrees, what is the distance x between the violet and red rays when they emerge from the glass? Take the index of refraction of air to be 1.00. AL- Answer: cm Check Incorrect Marks for this...

  • To practice Tactics Box 18.1 Analyzing refraction. If a ray refracts between medium 1 and medium 2, having indices of...

    To practice Tactics Box 18.1 Analyzing refraction. If a ray refracts between medium 1 and medium 2, having indices of refraction n1 and n2, the ray angles θ1 and θ2 in the two media are related by Snell's law, n1sinθ1=n2sinθ2. This law becomes a central idea in a procedure for analyzing refraction problems, as explained in the following Tactics Box. Draw a ray diagram. Represent the light beam with one ray. Draw a line normal to the boundary. Do this...

  • A triangular glass prism with apex angle has an index of refraction n=1.50 (Figure P35.37) What...

    A triangular glass prism with apex angle has an index of refraction n=1.50 (Figure P35.37) What is the smallest angle of incidence θ1 for which a light ray can emerge from the other side?

  • The angle of incidence at a solid/liquid boundary is 63.9°, and the index of refraction of...

    The angle of incidence at a solid/liquid boundary is 63.9°, and the index of refraction of the solid is n = 1.53. (a) What must be the index of refraction of the liquid such that the direction of the light entering the liquid is not changed? (b) What is the largest index of refraction that the liquid can have, such that none of the light is transmitted into the liquid and all of it is reflected back into the solid?

  • asap Question 19 of 31 > The index of refraction for a certain type of glass...

    asap Question 19 of 31 > The index of refraction for a certain type of glass is 1.637 for blue light and 1.607 for red light. A beam of white light (one that contains all colors) enters a plate of glass from the air, r1, at an incidence angle of 37.05. What is the absolute value of 8, the angle in the glass between blue and red parts of the refracted beams? 18] Question 18 of 31 > The core...

  • (a) What is the angle of refraction, that describes the light ray after it enters the...

    (a) What is the angle of refraction, that describes the light ray after it enters the glass from above? (Enter your answer in degrees to at least 2 decimal places.) (b) with what angle of incidence, y, does the ray approach the interface at the bottom of the glass? (Enter your answer in degrees to at least 2 decimal places.) (c) with what angle of refraction, does the ray emerge from the bottom of the glass? (Enter your answer in...

  • Light rays in a material with index of refraction 1.25 can undergo total internal reflection when...

    Light rays in a material with index of refraction 1.25 can undergo total internal reflection when they strike the interface with another material at a critical angle of incidence. Find the second material's index of refraction when the required critical angle is 65.1 degrees. O A 1.13 OB.226 O C.3.39 OD.4.45 OE. 5.56

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT