First we have to calculate the time taken to travel the distance 30 m, is
.
Now from equation of motion,
Given, .
As object starts from rest, so u = 0.
Substituting these values in above equation, we get
.
Thus, the acceleration is
Answer:
It takes for the radio signal to travel from earth to the spaceship.
Explanation:
Given:
The frequency of the radio signal = hertz
Distance = meters
To Find:
The time taken for the radio signal to travel from the earth to the spaceship= ?
Solution:
we know that the time taken can be found by dividing the distance travelled by the speed at which the signal travels
So
Here the speed of the radio signal is equal the the speed of light
Now substituting the values,
Time taken is
=>
=>
=>
The time taken for the 2×10⁶ Hz radio signal to get to the spaceship from Earth is 243.33 s
Speed is the distance travelled per unit. Mathematically, it can be expressed as:
Speed = distance / time
speed = distance / time
3×10⁸ = 7.3×10¹⁰ / time
Cross multiply
3×10⁸ × time = 7.3×10¹⁰
Divide both sides by 3×10⁸
Time = 7.3×10¹⁰ / 3×10⁸
Time = 243.33 s
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Nuclear fusion and fission releases tremendous amount of energy using radioactive material as a fuel.
Fusion and fission are similar in that they both release large amounts of energy.
Nuclear fusion is a process in which two nuclei join to form a larger nucleus.
Nuclear fission is a process in which a nucleus splits into two smaller nuclei.
At first sight, it doesn’t make sense that both fission and fusion release energy.
The key is in how tightly the nucleons are held together in a nucleus. If a nuclear reaction produces nuclei that are more tightly bound than the originals, then the excess energy will be released.
It turns out that the most tightly bound atomic nuclei are around the size of iron-56.
Thus, if you split a nucleus that is much larger than iron into smaller fragments, you will release energy because the smaller fragments are at a lower energy than the original nucleus.
If instead you fuse very light nuclei to get bigger products, energy is again released because the nucleons in the products are more tightly bound than in the original nuclei.
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Answer: C) They both result in products that have less mass than the reactants
Explanation: