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PilotLPTM [1.2K]
3 years ago
15

Suppose future astronauts are living on a Martian base when a major solar flare occurs. How long will it be before the charged p

articles ejected from the Sun during the flare reach them?
Physics
1 answer:
aev [14]3 years ago
8 0

Answer:

755.7 seconds

Explanation:

Distance between Sun and Mars = 226.71 * 10^9 m

Speed of light = 3 * 10^8 m/s

Speed = distance/time

Time = distance/speed

Time = (226.71 * 10^9)/(3 * 10^8)

Time = 755.7 s

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Bess [88]

Answer:

hola como estas hablas español

Explanation:

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3 years ago
Simple curiosity is not a legitimate reason to complete a scientific investigation
guapka [62]
Why not ? ? ?
If you can get the money, the laboratory to use, the experimental
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4 years ago
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Yuri [45]

Answer:

B. electromagnetic waves

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3 years ago
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luda_lava [24]

Answer:

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7 0
3 years ago
At what frequency should a 200-turn, flat coil of cross sectional area of 300 cm2 be rotated in a uniform 30-mT magnetic field t
stellarik [79]

Answer:

The frequency of the coil is 7.07 Hz

Explanation:

Given;

number of turn of the coil, N = 200 turn

area of the coil, A = 300 cm² = 0.03 m²

magnitude of magnetic field, B = 30 mT = 0.03 T

maximum value of induced emf, E = 8 V

The maximum induced emf in the coil is given by;

E = NBAω

E = NBA(2πf)

f = \frac{E_{max}}{2\pi*NBA}

where;

f is the frequency of the coil

f = \frac{E_{max}}{2\pi*NBA}\\\\f = \frac{8}{2\pi(200)(0.03)(0.03)} \\\\f = 7.07 \ Hz

Therefore, the frequency of the coil is 7.07 Hz

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3 years ago
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