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Gekata [30.6K]
4 years ago
8

A circular solenoid of radius R = 2cm passes through a square loop of wire with 1 turn and sides of length ℓ = 5cm. The solenoid

is wound with N = 150 turns of over a length 20cm. The system is drawn to the right. The magnetic field in the solenoid points out of the page as drawn. Compute the mutual inductance of the loop and the solenoid, Msol,loop
(a) 1.9 x 10-H
(b) 1.2 x 10-6H
(c) 2.4 x 10-61
(d) 8.9 x 10-51
(e) 3.3 x 10-H
Physics
1 answer:
ankoles [38]4 years ago
4 0
The answer for this problem is D
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Estimate the average power output of the sun, given that about 1350 w/m2 reaches the upper atmosphere of the earth.
fenix001 [56]

the <u>average powe</u><u>r</u> output of the sun is <u>3.8 × </u>10^{26}<u> W</u> given that about 1350 w/m2 reaches the upper atmosphere of the earth.

As we know intensity falling over a surface is equal to Energy falling per unit area per unit volume.

I = \frac{Energy}{area*time}

Since Power is equal to energy/time

I = power/area

or

Power = Intensity × area

Now, Distance from Sun to Earth , r = 149.6 ×10^{9}  m

So, Surface area of the sphere of radius is:

A = 4 π r^{2}

= 4 × 3.14 × (149.6 × 10^{9})²

=  2.81 × 10^{23}m²

Thus Average Power output of the sun will be:

P = 1350 × 2.81 × 10^{23}

= 3.7935 × 10^{26}

P = 3.8 ×    10^{26}  W

So the average power output of the sun is 3.8 × 10^{26} W.

If you need to learn more about about the average power of a resistor, click here.

brainly.com/question/12972958

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7 0
2 years ago
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A window in a house has a rectangular shape of 2.0 m by 1.0 m. The glass in the window is 0.5 cm thick, with a thermal conductiv
KonstantinChe [14]

Answer:

 P = 5280 W

Explanation:

The conductivity of the materials determines that heat flows from the hot part to the cold part, the equation for thermal conductivity transfer is

    P = Q / t = k A (T_{h} -T_{c}) / L

Where k is the thermal conductivity of the glass 0.8 W / ºC, A the area of ​​the window, T the temperature and L is glass thickness

Let's calculate the window area

    A = l * a

    A = 2.0 1.0

    A = 2.0 m²

Let's replace

    L = 0.5 cm (1 m / 100 cm) = 0.005 m

    P = 0.8 2 (20.5 - 4) / 0.005

    P = 5280 W

7 0
3 years ago
The discovery of Uranus________.
Yuki888 [10]
I think disproved geocentric theory proved that planetary orbits are elleptical
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3 years ago
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In general relativity, gravitational red shift is caused by
kvasek [131]
Option D would be the correct one!
7 0
3 years ago
Rhea kicks a soccer ball at 13km/h to Sean after kicking the ball the speed of the soccer ball from Rhea reference frame is 13km
Zinaida [17]

Answer:

Sean is standing still, and Rhea is running toward Sean while kicking the ball.

<em>Note: The question is in complete. The complete question is given below:</em>

<em>Rhea kicks a soccer ball at 13 km/h to Sean. After kicking the ball, the speed of the soccer ball from Rhea's reference frame is 13 km/h. The speed of the soccer ball from Sean's reference frame is 22 km/h.  Which conclusion is best supported by the information? </em>

<em>Sean is standing still, and Rhea is running toward Sean while kicking the ball.</em>

<em>Rhea is standing still after kicking the ball, and Sean is running away from Rhea.</em>

<em>Both soccer players are standing still after the ball is kicked.</em>

<em>Both soccer players are running while the ball is in motion.</em>

Explanation:

A reference frame is a position from which something is observed.

Since from the reference frame of Rhea, the ball is moving at a speed of 13 km/h after he kicks the ball at a speed of 13km/h whereas from the frame of reference of Sean, the ball is moving at a speed of 22km/h, there is a difference in the speed of the ball as seen from Rhea's and Sean's frame of reference of about 9 km/h. This difference can only be due to relative motion between the ball and Rhea.

Therefore, the best conclusion supported by the given information is that Sean is standing still, and Rhea is running toward Sean while kicking the ball.

4 0
3 years ago
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