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DiKsa [7]
3 years ago
3

When is elastic potential energy stored and when is it released in: a toy glider launcher the elastic cords or springs beneath a

sun-lounger a diving board?
Physics
1 answer:
nikklg [1K]3 years ago
4 0

Answer:

Explanation:

Assuming a toy glider works on a spring potential energy is stored when the spring(launcher) is fully compressed..and is released when the spring is released.

Potential Energy is stored when the diver has stepped on the board, and the board is at the bottom of its movement, and is released when the diver jumps off.

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1. Viruses are unique among infectious agents because they are
yuradex [85]
1,) C

2,) C

Hope this helps
4 0
4 years ago
Helppppo please help help I have no time quick I’m in the exam
Sunny_sXe [5.5K]

Answer:

D

Explanation:

calculate effective resistance of the resistors

= 80 + 120

= 200

overall resistance = 48 ohms

so overall current flowing through circuit

I = V / R

I = 12 / 200

I = 0.06 A

since circuit is in series, current is same at every point so...

potential difference across 80 = R x I

= 80 x 0.06

answer is potential difference = 4.8 V

hope this helps

please mark it brainliest

I just learned this chapter recently

5 0
3 years ago
An object with a height of 1.0 cm is placed 1.4 cm from a convex lens that has a
Gennadij [26K]

Answer:

A concave mirror has a focal length of. 10.0 cm. What is its radius of curvature? ... 20.0 cm. 62. An object located 18 cm from a convex mirror produces a virtual image 9 ... cm. 75 cm. 66. Find the image position and height for the object shown in ... 1 block 1.0 cm. Vertical scale: 2 blocks 1.0 cm. F. I1 hi. 1.0 cm di. 2.7 cm. O1.

Explanation:

Hope This Helps

5 0
3 years ago
His eyes are 1.76 m above the floor, and the top of his head is 0.15 m higher. Find the height (in m) above the floor of the top
krek1111 [17]

Answer:

The height (in m) above the floor of the top and bottom of the smallest mirror in which he can see both the top of his head and his feet is;

1.835 m and 0.88 m.

Explanation:

Here we have the total height of the man as

1.76 + 0.15 = 1.91 m

The mirror is positioned such that the person can see both the top of his head and his feet

We have the eyes are 0.15 m below the top of the head, therefore by the law of reflection, the incident and reflected angle must be equal.

Hence, the light from the top of his head and then reflected to his eyes forms a isosceles triangle, with the base being the distance of the eye to the top of his head and the top of the triangle is on the mirror.

The height of the mirror is then

1.91 - 0.15/2 = 1.835 m

Similarly, the distance from the eye to the feet is 1.76, therefore, the base of the mirror is positioned at 1.76/2 or 0.88 m above the ground.

7 0
3 years ago
Read 2 more answers
A strip of copper 150 μm thickand 4.5 mm wide is placed in a uniform magnetic field B (vector) ofmagnitude 0.65 T, with B (vecto
kykrilka [37]

Answer:

V_H=7.3544\times 10^{-6} \,V

Explanation:

Given that:

thickness of the metal strip, d=150\times 10^{-6} m

width of the metal strip, w=4.5\times 10^{-3}m

magnitude of the perpendicular magnetic field, B=0.65 \,T

current through the strip, I=23\,A

charge density, n=8.47\times 10^{28} \,electrons\,per\,m^3

Hall voltage is a transverse voltage given by:

V_H=\frac{I.B}{n.e.d}

putting the respective values

V_H=\frac{23\times 0.65}{(8.47\times 10^{28})\times 1.6\times 10^{-19}\times (150\times 10^{-6} )}

V_H=7.3544\times 10^{-6} \,V

Note:

V = E d is used when a charge is moved in a uniform electric field between the two oppositely charged plates, it can't be used here because it is the case of Hall effect where the small voltage develops transverse  to the direction of current flow.

6 0
3 years ago
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