1answer.
Ask question
Login Signup
Ask question
All categories
  • English
  • Mathematics
  • Social Studies
  • Business
  • History
  • Health
  • Geography
  • Biology
  • Physics
  • Chemistry
  • Computers and Technology
  • Arts
  • World Languages
  • Spanish
  • French
  • German
  • Advanced Placement (AP)
  • SAT
  • Medicine
  • Law
  • Engineering
blsea [12.9K]
2 years ago
7

Translate the term phacoscope as literally as possible. Group of answer choices Instrument for looking at the iris Instrument fo

r measuring the eye Instrument for looking at the retina Instrument for looking at the lens
Physics
1 answer:
dem82 [27]2 years ago
4 0

The term phacoscope as literally as possible as Instrument for measuring the eye, Instrument for looking at the retina.

<h3>What is Iris ?</h3>

The colourful portion of your eye is called the iris. The tiny, black aperture that allows light into your eye, the pupil, is controlled by muscles in your iris. Your iris' hue resembles that of your fingerprint. No one else in the entire world has an eye that colour exactly like yours.

Aqueous humour, the clear fluid that fills the front of the eye, is produced by the ciliary body. The pupil is where the fluid exits. After there, it enters the trabecular meshwork and a series of canals that make up the drainage system of the eye.

to learn more about iris go to -

brainly.com/question/1503139

#SPJ4

You might be interested in
Does the horizontal distance d travelled by the ball depend on the height of release? If it does depend on the height, what is t
elena-s [515]

Answer:

Explanation:

Yes , the horizontal distance travelled by the ball will depend upon the height of release .

When a ball is thrown at some angle from a height , it has two components , the vertical component and horizontal component . The ball goes in horizontal direction due to its horizontal component . Its vertical component has no role to play .  But the horizontal range covered by the body thrown

depends upon the duration of time in which it remains in air . The longer it remains in air , the greater distance it can cover horizontally .

Horizontal distance covered = t x horizontal velocity

If V be the velocity of throw and Vx be its horizontal component

Horizontal distance covered = t x Vx

Now t depends upon the height . If height rises , time of fall will increase so horizontal distance covered will increase .

If h be the height from which the body is thrown , Vy be the vertical upward component of initial velocity

from the relation

s = ut + 1/2 at²

h = - Vy t  + 1/2 at²

As h increases , t will increase and therefore horizontal distance covered will increase. If the ball has only  horizontal velocity initially , Vy = 0

h = 1/2 gt²

t = \sqrt{\frac{2h}{g} }

Horizontal distance covered  = t x Vx

= \sqrt{\frac{2h}{g} } \times  V_x

From this expression also

Horizontal distance covered is proportional to \sqrt{h} .

7 0
4 years ago
Which of the following is true about wedges?
timofeeve [1]

Answer:

wedges are a type of inclined plane.

Explanation:

i just answered :) :) :)

8 0
3 years ago
What type of energy transfer occurs through light or electromagnetic waves?
Free_Kalibri [48]
Radiation is the transfer of heat energy through space by electromagnetic radiation. Most of the electromagnetic radiation that comes to the earth from the sun is in the form of visible light. Light is made of waves of different frequencies.
4 0
3 years ago
Read 2 more answers
A sound source is moving at 80 m/s toward a stationary listener that is standing in still air (a) Find the wavelength of the sou
Setler [38]

Answer:

a. wavelength of the sound, \vartheta = 1.315\vartheta_{o}

b. observed frequecy, \lambda = 0.7604\lambda_{o}

Given:

speed of sound source, v_{s} = 80 m/s

speed of sound in air or vacuum, v_{a} = 343 m/s

speed of sound observed, v_{o} = 0 m/s

Solution:

From the relation:

v = \vartheta \lambda        (1)

where

v = velocity of sound

\vartheta = observed frequency of sound

\lambda = wavelength

(a) The wavelength of the sound between source and the listener is given by:

\lambda = \frac{v_{a}}{\vartheta }         (2)

(b) The observed frequency is given by:

\vartheta = \frac{v_{a}}{v_{a} - v_{s}}\vartheta_{o}

\vartheta = \frac{334}{334 - 80}\vartheta_{o}

\vartheta = 1.315\vartheta_{o}                (3)

Using eqn (2) and (3):

\lambda = \frac{334}{1.315} = \frac{1}{1.315}\frac{v_{a}}{\vartheta_{o}}

\lambda = 0.7604\lambda_{o}

4 0
3 years ago
Astronomers believe that cosmic background radiation formed:
mr_godi [17]
The assumption that the cosmic microwave background
is the remnant of the environment at the time of the big bang
or very shortly after it explains very well what we observe now. 
So it is the current prevailing theory. "Believe" is not involved.
5 0
3 years ago
Other questions:
  • Albert uses as his unit of length (for walking to visit his neighbors or plowing his fields) the albert (a), the distance albert
    14·1 answer
  • Calculate the potential energy of 5kg object sitting on a 3m ledge.
    8·1 answer
  • Help me on this question? log x-log 9=1
    7·2 answers
  • In photography what are clouds best described as?
    15·1 answer
  • What is a personal bias?
    14·1 answer
  • Select all the substances that can transmit sound waves.
    7·2 answers
  • List inner planets and outer planets
    9·2 answers
  • Calculate the average speed 
    7·1 answer
  • An electron of mass 9.11*10-31kg has an initial speed of 3.00*105m/s. It travels in a straight line and its speed increases to 7
    9·1 answer
  • A rugby players runs 10.0 m straight down the playing field in 2.00 s. The player is then hit and pushed 5.00 m straight backwar
    9·1 answer
Add answer
Login
Not registered? Fast signup
Signup
Login Signup
Ask question!