b)335 hours into seconds.
c)1 day into seconds.
Explanation:
A) 1 kg = 1000g
2500kg = 2500000g
B 1 hour = 3600 sec
335 hour = 1206000sec
C 1day = 24 hours
1 hour = 3600 sec
24 hours = 86400sec
Answers:
a.2500000grams
B.1206000seconds
c.86400seconds.
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The speed of light is approximately 299,792 kilometers (186,282 miles) per second. Given a millisecond is a thousandth of a second, light will travel approximately 299.792 kilometers in one millisecond.
The speed of light in a vacuum, such as outer space, is a set constant in physics, approximately 299,792 kilometers per second, or about 186,282 miles per second. Thus, if we want to know how far light travels in 1 millisecond, that is, one hundredth of a scecond, we need to convert seconds into milliseconds.
There are 1,000 milliseconds in one second. Hence, in 1 millisecond, light will travel about 299.792 kilometers (or about 186.282 miles).
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The force between the two point charges is "5 N".
The total of almost all of the forces operating on an item is referred to as the magnitude of force. When some of the forces operate in the same direction, this same magnitude rises. Whenever forces occur in opposite directions around an item, the amount of something like the force diminishes.
Distance between charges, d = 6 cm
Attractive force, F = 20 N
Separated, d' = 12 cm
We know the formula,
F =
or,
F ...(Equation 1)
New force will be:
F' ...(Equation 2)
From "Equation 1" and "Equation 2", we get
→
By substituting the values,
F' = 5 N
Thus the approach above is appropriate.
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Answer:
The force between them when they are separated by 12 cm is 5 N.
Explanation:
Distance between two point charges, d = 6 cm
The attractive force between them is 20 N, F = 20 N
Let F' is the force between them when they are separated by 12 cm, d' = 12 cm
The force between point charges is given by the formula as :
........(1)
New force,
............(2)
From (1) and (2) :
So, the force between them when they are separated by 12 cm is 5 N. Hence, this is the required solution.
Answer:
Input work is the work done on a machine as the input force acts through the input distance. This is in contrast to output work which is a force that is applied by the body or system to something else. Output work is the work done by a machine as the output force acts through the output distance.Jan 15, 2020 whhdbd dhd dvd s bs sbs shs shs sh s
Explanation:
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What will that action cause her body to do? Why?
Which of Newton’s Laws applies to this situation?
Write a paragraph which incorporates all of the above information.
Answer:
In order to get back to the ship, the astronaut must throw the belt in the opposite direction the spaceship.
From Newton's third law of motion:
For every action, there is equal and opposite reaction.
In order to throw the belt away, astronaut would apply some force which cause same amount of force acting on her body in the opposite direction which would take her towards the spaceship.