The correct answer to the question is D). Gravity.
EXPLANATION:
Before coming into any conclusion, first we have to understand centripetal force.
Centripetal force is the force which is required to keep a body moving in a circular path. This force always acts along the radius and towards the centre.
As per the question, the object is moving around the earth. As it is moving in a orbit, it needs a centripetal force which will help the object stick to the orbit.
The centripetal force required is provided to the object by the gravitational force of earth .
Air resistance and friction play no role in imparting centripetal force to the object.
Hence, the correct option of this question is gravity, which is the only force that acts on an object orbiting earth.
Answer:
cant be dived or destroyed
Answer:
Distance traveled will be
Explanation:
We have given speed of the light
We have to find the distance traveled by light in 1 year
We know that 1 year = 8760 hour
And 1 hour = 60×60 = 3600 sec
So 1 year
We know that distance = speed × time
So distance traveled by light in one year
We have to fond the distance in km
As we know that 1 km = 1000 m
So
Radio messages will travel approximately 9.46 x 10^12 kilometers in exactly one year.
Radio waves travel at the speed of light which is approximately 3.00 x 108 m/s.
To find out how many kilometers radio messages will travel in exactly one year, we need to first convert the speed of light into kilometers per second.
Since there are 1000 meters in a kilometer, we divide the speed of light by 1000 to convert from meters to kilometers. Then, we multiply this value by the number of seconds in a year (365 days x 24 hours x 60 minutes x 60 seconds) to get the total distance traveled in kilometers.
In summary, radio messages will travel approximately 9.46 x 1012 kilometers in exactly one year.
Learn more about Speed of light here:
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Answer:
(a). The charge is
(b). The initial stored energy is
(c). The final stored energy is
(d). The work required to separate the plates is
Explanation:
Given that,
Area = 8.50 cm²
Distance = 3.00 mm
Potential = 6.00 V
Distance without discharge = 8.00 mm
(a). We need to calculate the capacitance
Using formula of capacitance
Put the value into the formula
We need to calculate the charge
Using formula of charge
Put the value into the formula
(b). We need to calculate the initial stored energy
Using formula of initial energy
(c). We need to calculate the capacitance
Using formula of capacitance
Put the value into the formula
We need to calculate the final stored energy
Using formula of initial energy
(d). We need to calculate the work done
Using formula of work done
Put the value in the formula
Hence, (a). The charge is
(b). The initial stored energy is
(c). The final stored energy is
(d). The work required to separate the plates is