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qaws [65]
3 years ago
14

. A camera with a 50.0-mm focal length lens is being used to photograph a person standing 3.00 m away. (a) How far from the lens

must the film be
Physics
1 answer:
rosijanka [135]3 years ago
8 0

Answer:

<h2>The film must be 0.051 m away from the lens</h2>

Explanation:

Using the lens formula 1/f = 1/u + 1/v

f = focal length of the lens

u = object distance

v = image distance

Given focal length f = 50.0mm = 50/1000 = 0.05m

<em>Note that a camera uses a convex lens and the focal length of a convex lens is positive.</em>

object distance u = 5.00m

To know how far from the lens must the film be, we need to calculate the image distance v.

from the formula above;

1/v = 1/f - 1/u

1/v = 1/0.05 - 1/3

1/v = 20-0.33

1/v = 19.67

v = 1/19.67

v = 0.051m

Hence, the film must be 0.051 m away from the lens

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Which one of the following describes the molecular geometry of a molecule with four electron groups with only bonded pairs?​
telo118 [61]

Answer:

correct answer is D

Explanation:

In the covalent bond, a pair of electrons is shared between two atoms, in this case we have 4 electrons in one atoms and they are shared in pairs, so for these as far apart as possible due to electron-electron repulsion between the electrons of different bonds it must have a TETRAHEDRAL geometry

the correct answer is D

8 0
3 years ago
A uniform stationary ladder of length L and mass M leans against a smooth vertical wall, while its bottom legs rest on a rough h
ikadub [295]

Answer:A uniform ladder of mass and length leans at an angle against a frictionless wall .If the coefficient of static friction between the ladder and the ground is , determine a formula for the minimum angle at which the ladder will not slip.

Explanation:A uniform ladder of mass and length leans at an angle against a frictionless wall .If the coefficient of static friction between the ladder and the ground is , determine a formula for the minimum angle at which the ladder will not slip.

3 0
3 years ago
Name two things radio waves have in common with visible light
kondaur [170]
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8 0
3 years ago
A baseball team is practicing throwing balls vertically upward to test their throwing arms. A player manages to throw a ball tha
Nitella [24]
We can solve this problem using the law of conservation of energy.
This law states that energy in a closed system must stay same.
That means that the energy of a ball leaving the hand and the energy of a ball when it reaches its maximum height must be the same.
The energy of a ball leaving the players hand is kinetic energy:
E_k=\frac{mv^2}{2}
The energy when the ball reaches its maximum height ( and has zero velocity) is potential energy in a gravitational field:
E_p=mgh
As said before these energies must be the same, and that allows us to find the initial speed:
E_k=E_p\\&#10;\frac{mv^2}{2}=mgh\\&#10;v^2=2gh\\&#10;v=\sqrt{2gh}
When we plug in all the number we get that v=14\frac{m}{s}

7 0
3 years ago
A) Using Excel, or some other graphing software, plot the values of y as a function of x. (You will not submit this spreadsheet.
tiny-mole [99]

Answer:

   y = 1.06 x + 0.14

            r² = 0.95

Explanation:

a) To make this graph, a spreadsheet-type calculation program is used, see attached.

On the y axis are the measured values

On the x-axis, the values ​​checked in the experiment are placed.

From the graph we see that a linear graph and that one of the values ​​has a strong deviation with respect to the others

b) The red line is the best straight line that can be drawn,

    for this the quality ajust is r²  

the closer to 1 the better the fit

           

the equation of the line is

            y = 1.06 x + 0.14

            r² = 0.95

3 0
3 years ago
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