Ask Question, Ask an Expert

+61-413 786 465

info@mywordsolution.com

Ask Physics Expert

QUESTION 1: hyperopia is usually corrected with

A. cylindrical lenses

B. achromatic doublet lenses

C. diverging lenses

D. converging lenses

QUESTION 2: myopia is usually corrected with

A. cylindrical lenses

B. achromatic doublet lenses

C. diverging lenses

D. converging lenses

QUESTION 3: The far point of a near-sighted person

A. is usually closer than 25 cm from the eye

B. is at infinity

C. is usually farther than 25 cm from the eye but less than infinity

D. is 25 cm from the eye

QUESTION 4: As a person ages, their eyelenses become less and less able to squeeze themselves into the proper shape needed to bring light from nearby sources into a focus on the retina. This occurs because

A. The eyelens changes shape as we age

B. The index of refraction of the eyelens becomes smaller as we age

C. Additional layers form on the eyelens, insulating it from the vitreous humor liquid and making it less flexible

D. The eyelens moves farther into the eye as we age

QUESTION 5: For three people, their eyeglass prescriptions specify the following: +3D, -3D and bifocals. These three people are, respectively

A. Hyperopic, myopic, presbyopic

B. Astigmatic, myopic, presbyopic

C. Myopic, presbyopic, hyperopic

D. None of the above

QUESTION 6: The benefit of using a Schmidt corrector plate in a reflecting telescope is that

A. It bends the incoming parallel rays just enough to correct for the spherical aberration of the primary mirror

B. It covers the top of the telescope tube, keeping dirt and air currents out of the tube

C. Both A and B

D. It brings the rays to a focus

QUESTION 7: An object sits at the focal point of a parabolic mirror. At what distance from the mirror will the image of the object be created?

A. It will be imaged at half its focal length

B. It will be imaged at its focal length

C. It will be imaged at twice its focal length

D. None - the beams will be reflected parallel to each other and no image will be formed

QUESTION 8: Why do reflecting telescopes use curved mirrors instead of flat mirrors?

A. To make converging beams of light become parallel

B. To redirect parallel beams of light to converge to a point

C. Because curved mirrors reflect light in a wavelength-dependent way

D. None of the above

QUESTION 9: The reason why chromatic aberration isn't a problem for reflecting telescopes is that

A. The law of reflection holds for all wavelengths, so blue light and red light are reflected by the same amount

B. The shape of the mirror in a reflector telescope can compensate for the chromatic aberration

C. Only specific wavelengths of light are reflected

D. A and C

QUESTION 10: The more curved a convex lens becomes, the smaller its focal length becomes, and vice versa. What then is the focal length of a flat, plane piece of glass?

A. zero

B. depends on the index of refraction, n, of the glass

C. it's effectively infinite

D. it's very small if illuminated by red light, and very large if illuminated by blue light

QUESTION 11: How does the light-gathering power of an 8-meter telescope compare to a 3-meter telescope?

A. It is about 2.5 times larger

B. It is about 5 times larger

C. It is about 7 times larger

D. It is about 7 times smaller

QUESTION 12: I am nearsighted (myopic), so instead of my far point being infinitely far away, it's ony 80 cm away. How many diopters will my prescription glasses need?

A. -1.25D

B. +1.25D

C. +2.75D

D. none; my vision is fine!

QUESTION 13: The figure shows a schematic diagram of a defective eye and some lenses. Which of the lenses shown can correct for this defect?

2254_lens.png

A. (biconvex lens)

B. (planar lens)

C. (plano-concave lens)

D. (bi-concave lens)

E. (negative meniscus lens)

QUESTION 14: When the ciliary muscles of the eye remain tensed for a significant period of time, eyestrain results. Which of the following instruments is least related to eye strain?

A. A telescope

B. A microscope

C. A magnifying glass

D. Sunglasses

QUESTION 15: Observatories are usually located on mountaintops because

A. On the mountaintop it's closer to the stars

B. Higher up the air is steadier and drier, and this makes for better seeing of the sky

C. There is less wind on a mountaintop

D. It's usually warmer on mountaintops, making it easier on astronomers

QUESTION 16: I have a refracting telescope with an objective lens focal length f=200 mm. I have three possible eyepieces I can use with this telescope, having focal lengths of 9 mm, 25mm and 50 mm. I want to look at the planet Jupiter though the telescope, and I would like to make out details on the banded clouds encircling the planet (i.e., I'd like to see a highly magnified view). Which eyepiece would I best use for this?

A. 9 mm

B. 25 mm

C. 50 mm

D. It doesn't matter which one

QUESTION 17: Similar to the above question, I have a refracting telescope with an objective lens focal length f=200 mm. I have three possible eyepieces I can use with this telescope, having focal lengths of 9 mm, 25mm and 50 mm. I want to look at a cluster of stars which are well spread apart from each other on the sky. Which eyepiece would I best use for this?

A. 9 mm

B. 25 mm

C. 50 mm

D. It doesn't matter which one

QUESTION 18: By the Rayleigh criterion, if I use a 4-meter telescope, I can make out stars that are ____ as far apart
as stars observed through a 2-meter telescope

A. Equally

B. Half

C. Twice

D. None of the above

QUESTION 19: Parallel rays of light are shown entering the lens system in the attached diagram. The two lenses are separated by their combined focal lengths. Which answer best describes the rays after they pass through the second lens?

1210_beam.png

A. Beam widens (but rays still parallel)

B. Beam narrows (but rays still parallel)

C. Beam is focused

D. Beam diverges

QUESTION 20: Which of these statements best explains why a telescope enables us to see details of a distant object such as the Moon or a planet more clearly?

A. The telescope only lets through shorter wavelengths which are easier for our eye to detect

B. The image formed by the telescope allows us to make out the object in more detail

C. The image formed by the telescope is larger than the object

D. Both B and C: the image is larger and we resolve more detail.

Physics, Academics

  • Category:- Physics
  • Reference No.:- M91370258
  • Price:- $25

Guranteed 24 Hours Delivery, In Price:- $25

Have any Question?


Related Questions in Physics

Question this problem concerns the properties of circular

Question: This problem concerns the properties of circular orbits for a satellite of mass m orbiting a planet of mass M in an almost circular orbit of radius r. In doing this problem, you are to assume that the planet ha ...

Question a thin horizontal 20-cm-diameter copper plate is

Question: A thin, horizontal, 20-cm-diameter copper plate is charged to 4.0 nC . Assume that the electrons are uniformly distributed on the surface a) What is the strength of the electric field 0.1 mm above the center of ...

After deploying her parachute a skydiver falls through the

After deploying her parachute, a skydiver falls through the air with a constant speed of 8.00 m/s . As she falls, there is a constant breeze blowing west at 2.50 m/s. At what angle from the downward vertical does the par ...

Additional problem 1unpolarized light passes through two

ADDITIONAL PROBLEM 1 Unpolarized light passes through two polarizers whose transmission axes are at an angle # with respect to each other. What should be the angle # between the transmission axes of the polarizers if it ...

Three people are fighting over a book the mass of the

Three people are fighting over a book. The mass of the book is m=9.18kg. Each person exerts a force on the book, F. The angle between the first person and the second person's force is 125.9 degrees. If the first person i ...

Question a parallel-plate air capacitor has a capacitance

Question: A parallel-plate air capacitor has a capacitance of 920 pF. The charge on each plate is 3.90 μC. A) What is the potential difference between the plates? Express your answer in kV. B) If the charge is kept cons ...

A cheetah can run very quickly over short distances assume

A cheetah can run very quickly over short distances. Assume a cheetah has a constant velocity of 33.0 m/s and is approaching a gazelle that is initially at rest. When the cheetah is 90 m away, the gazelle begins to run w ...

Question in a physics laboratory experiment a coil with 230

Question: In a physics laboratory experiment, a coil with 230 turns enclosing an area of 12.1 cm2 is rotated during the time interval 4.10Ã-10?2 s from a position in which its plane is perpendicular to Earth's magnetic f ...

Question a slab of insulating material of uniform thickness

Question: A slab of insulating material of uniform thickness d, lying between -d/2 to +d/2 along the x axis, extends infinitely in the y and z directions. The slab has a uniform charge density ρ. The electric field is z ...

A slab of clay with a mass of 026 kg moving with a

A slab of clay with a mass of 0.26 kg, moving with a speed of 5.24 m/s, hits a stationary toy car of mass 0.54 kg. If the clay hits and sticks to the car, what is the speed of the clay and car (which are now moving fused ...

  • 4,153,160 Questions Asked
  • 13,132 Experts
  • 2,558,936 Questions Answered

Ask Experts for help!!

Looking for Assignment Help?

Start excelling in your Courses, Get help with Assignment

Write us your full requirement for evaluation and you will receive response within 20 minutes turnaround time.

Ask Now Help with Problems, Get a Best Answer

Why might a bank avoid the use of interest rate swaps even

Why might a bank avoid the use of interest rate swaps, even when the institution is exposed to significant interest rate

Describe the difference between zero coupon bonds and

Describe the difference between zero coupon bonds and coupon bonds. Under what conditions will a coupon bond sell at a p

Compute the present value of an annuity of 880 per year

Compute the present value of an annuity of $ 880 per year for 16 years, given a discount rate of 6 percent per annum. As

Compute the present value of an 1150 payment made in ten

Compute the present value of an $1,150 payment made in ten years when the discount rate is 12 percent. (Do not round int

Compute the present value of an annuity of 699 per year

Compute the present value of an annuity of $ 699 per year for 19 years, given a discount rate of 6 percent per annum. As