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1.The mass of a typical car is m =1000 kg, so its weight on the Earth’s surface is mg =9800 N. Suppose you have two containers, one with N electrons and another with N protons. These two containers are placed a distance 10 m apart, and the electric force between them is equal to the weight of the car. Find N.
2. A helium nucleus contains two protons. What is the approximate magnitude of the electric force between these two protons? Is this force attractive or repulsive? The radius of this nucleus is about 1.0 ×10-15 m. Assume the protons are point particles.
3.What is the repulsive electrical force between two protons 5.0 X 10-15 m apart from each other in an atomic nucleus?
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4.Electric Field in the Nucleus Protons in the nucleus are of the order of 10-15 m (1 fin) apart. What is the magnitude of the electric field produced by a proton at a distance of 1.50 fm from it?
5.Electric Force With in the Nucleus Typical dimensions of atomic nuclei are of the order of l0-15 m (1 fm).
(a) If two protons in a nucleus are 2.0 fm apart, find the magnitude of the electric force each one exerts on the other. Express the answer in newtons and in pounds. Would this force be large enough for a person to feel?
(b) Since the protons repel each other so strongly, why don’t they shoot out of the nucleus?
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