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Sladkaya [172]
4 years ago
10

What is a topographical map? Select all that apply:

Computers and Technology
1 answer:
expeople1 [14]4 years ago
5 0

Answer:

1.Shows roads

2.shows the contours and physical features of an area

Explanation:

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Explain the difference between undecidable problems and unreasonable time algorithms. Be specific.
ddd [48]

One for which no algorithm can ever be written to find the solution is an unsolvable problem. An undecidable problem is one for which no algorithm can ever be written that will always provide any input value with a correct true/false option.

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Once you resize a photograph, it cannot be returned to its original size. TRUE or FALSE
VladimirAG [237]
I believe the answer is false

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3.A ball is thrown into the air with an initial velocity of 15 m/s. a.How long does it take the ball to reach maximum height?b.W
ehidna [41]

Answer:  a) = 1.5 sec.  b= 11.5 m. c=0  d= 1.5 sec.

Explanation:

a) Once thrown into the air , the only influence on the ball is gravity, so, we can conclude that the acceleration acting on the ball is the one due to gravity, i.e., g= 9.8 m/sec².

Applying the definition of acceleration, we can write the following equation:

a= (vf-vo) / t   ⇒ g = vf-vo / t. (1)

Now, when the ball reaches to his maximum height, it stops momentarily, and then starts to fall, so for this height, we can write vf=0.

Replacing  in (1), and solving for t, we get:

t = (0 -vo) / g = -15 m/s/ - 9.8 m/sec² (Taking upward as positive  direction)

a) t= 1.5 sec.

Replacing this value in the kinematic equation for displacement, when vo=15 m/s, we get:

hmax: 15 m/sec . 1.5 sec -1/2. 9.8 m/sec². (1.5 sec) ² (2)

b) hmax= 11.5 m

c) vf= 0 (as explained above)

Finally, in order to know how long the ball takes to return to its initial height, we know that for the falling part of the trajectory, vo=0, so we can write the equation for displacement as follows:

h=-hmax (because it returns to the same starting point)= 1/2 gt²=-11.5 m

Solving for t, we get:

d) t=1.5 sec.

It can be seen that the time used in going up, it is the same for going down, to travel the same distance.

This result is completely general and applies to any free fall problem.

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I need the solution to this task please anyone
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Answer:

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C. is the answer to that question

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