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SCORPION-xisa [38]
3 years ago
13

Voyager 2 was able to capture proof of the intensity of storms that occur on Neptune. These are known to be ________________ tim

es as strong as those on Earth. a Nine b Three c Two d Six
Physics
2 answers:
Readme [11.4K]3 years ago
6 0
The answer you are looking for is A. nine
kiruha [24]3 years ago
6 0

Answer:

Voyager 2 was able to capture proof of the intensity of storms that occur on Neptune. These are known to be <u>Nine</u> times as strong as those on Earth.  

Explanation:

Neptune has huge storm system. Strong wind storms blow on the surface of the planet Neptune. The speed of the storm is about 2100 km/h which is about nine times the speed of storms on Earth. The Great Dark Spot is huge storm which is as big as the size of the Earth. Voyager 2 was able to capture the image of the storm occurring on Neptune which provided the proof of the intensity of the storms.

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A snail travels 300 cm in 4 minutes.calculate speed of snail in m/s
LekaFEV [45]

Answer:

\frac{0.0125m}{s}

Explanation:

In order to solve this question we need to know that  speed = \frac{distance}{time}. Then we need to convert 4 minutes into seconds and cm into m. We can do that by multiplying the number of minutes by 60 (because there is 60 seconds in one minute) and dividing the number of cm by 100 (because there is 100 cm in one m). So.......

4min = 4 x 60s = 240s

300cm = 300/100 m = 3m

Now we know that distance = 300m, and that the time = 4min = 240s ⇒

⇒ speed=\frac{distance}{time} = \frac{3m}{240s} = \frac{0.0125m}{s}

5 0
3 years ago
If 3600 j of work is done in 3.0 s what is the power<br>0.00083W<br>1200W<br>3600W<br>11000W
Viktor [21]

Answer:

1200 W

Explanation:

Power is given by the ratio between work done and time taken:

P=\frac{W}{t}

where W is the work done and t the time taken.

In this problem, W = 3600 J and t = 3.0 s. Therefore, the power in this exercise is

P=\frac{3600 J}{3.0 s}=1200 W

5 0
4 years ago
Read 2 more answers
An electron is released from rest in a weak electric field given by E =-2.30 x 10-10 N/Cj. After the electron has traveled a ver
Goshia [24]

Explanation:

It is given that,

An electron is released from rest in a weak electric field of, E=2.3\times 10^{-10}\ N/C

Vertical distance covered, s=1\ \mu m=10^{-6}\ m

We need to find the speed of the electron. Let its speed is v. Using third equation of motion as :

v^2-u^2=2as

v^2=2as.............(1)

Electric force is F_e and force of gravity is F_g. As both forces are acting in downward direction. So, total force is:

F=mg+qE

F=9.1\times 10^{-31}\times 9.8+1.6\times 10^{-19}\times 2.3\times 10^{-10}

F=4.57\times 10^{-29}\ N

Acceleration of the electron, a=\dfrac{F}{m}

a=\dfrac{4.57\times 10^{-29}\ N}{9.1\times 10^{-31}\ kg}

a=50.21\ m/s^2

Put the value of a in equation (1) as :

v=\sqrt{2as}

v=\sqrt{2\times 50.21\times 10^{-6}}

v = 0.010 m/s

So, the speed of the electron is 0.010 m/s. Hence, this is the required solution.

6 0
4 years ago
I need assistance with this:​
emmainna [20.7K]

11: 75% = 0.75     12 / 0.75 = 16          The Knicks attempted 16 free throws.

12: 320 - (0.05 x 320) = 304      304 Claims were accepted

7 0
3 years ago
If the core of a supernova explosion contains three or more solar masses of matter, the core will most likely become a _____.
Digiron [165]
The correct answer to the question you gave above would be a black hole. I<span>f the core of a supernova explosion contains three or more solar masses of matter, the core will most likely become a black hole. </span>
4 0
3 years ago
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