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astra-53 [7]
3 years ago
6

Please awnser this will mark brainliest

Physics
2 answers:
LuckyWell [14K]3 years ago
7 0

Answer:

<em>1. Yes</em>

<em>2. Check down below</em>

<em>3. No</em>

Explanation:

Hello, allow me to explain what I mean:

<em>1. </em>Yes, Robots can perform some jobs even better than humans can. It depends on what job.

For example, making items in a factory is easier for machines than it is for humans.

<em>The opposite is also true, humans can adapt to certain situations.</em>

<em>2. </em>Some risks may be that:

  • Machinery is coded wrong, this means that it will mess up in the work it is given
  • Machines need to be checked and that takes lots of time
  • Machines were made by humans, Humans are imperfect creatures, therefore machines are also imperfect.

<em>3. </em>No, Humans are creatures so complex that we don't even understand everything about ourselves, so no Robots will most likely never be able to adapt exactly like humans.

<em>They might be able to adapt to changes but never adapt like the human brain... It's much too complex.</em>

<em>Hope I could help!</em>

<em>-Nova</em>

Alex17521 [72]3 years ago
4 0

Answer:

yes

Explanation:

robots will be more precise and faster than a human. although glitches in the machinery are a problem especially in more local areas. robots will have a hard time adapting to new environments because they don't have brains or any human emotion.

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Explain how the plants of a tropical rain forest contribute to the characteristic hot, humid weather associated with the area. U
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Explanation:

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6 0
3 years ago
A 92kg astronaut and a 1200kg satellite are at rest relative to the space shuttle. The astronaut pushes on the satellite, giving
Harman [31]

Answer:

13.7m

Explanation:

Since there's no external force acting on the astronaut or the satellite, the momentum must be conserved before and after the push. Since both are at rest before, momentum is 0.

After the push

m_av_a + m_sv_s = 0

Where m_a = 92kg is the mass of the astronaut, m_s = 1200kg is the mass of the satellite, v_s = 0.14 m/s is the speed of the satellite. We can calculate the speed v_a of the astronaut:

v_a = \frac{-m_sv_s}{m_a} = \frac{-1200*0.14}{92} = -1.83 m/s

So the astronaut has a opposite direction with the satellite motion, which is further away from the shuttle. Since it takes 7.5 s for the astronaut to make contact with the shuttle, the distance would be

d = vt = 1.83 * 7.5 = 13.7 m

4 0
3 years ago
An echo repeats two syllables.If the velocity of sound is 330 m/s , then the distance of the reflecting surface is-
Andreas93 [3]
<span>Well, the main point you should remember is that we only can hear  20hz that leads to T=0.05sec which means that the distance leads us to velocity x time.
When calculating, you get 330 * 0.05=16.5 .
The number which you got from the previous step has to me multiplied 4 times (4 minutes) and you will get the answer you need - </span><span>a) 66.0 m.
Do hope it will help you! Regards!</span>
6 0
4 years ago
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