Find the momentum (in kg • m/s) of a helium nucleus having a mass of 6.68 x 10-27 kg that is moving at 0.576c. kg • m/s Submit Answer
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- Helpful information: (1) An alpha particle is a helium nucleus, (2) e = 1.6 × 10-¹⁹ C, (3) k₂ = 9.0 × 10⁹ Nm² C-2, (4) 1nm = 1 × 10-⁹ m 1-An alpha particle lies on the x-axis, a distance of 1.0 nanometer from a proton (in this set-up, the alpha particle is at the origin while the proton is in the positive direction). Which of the following choices below represents the magnitude of the electric force on the alpha particle? (a) 2.3 × 10-10 N (b) 4.6 × 10-10 N (c) 2.3 x 10-19 N (d) 4.6 x 10-19 N cing the voltage so following insta choices below at a time! 1.00 s?what are units of "γ" in E ≈ (1/2)kA2 e−γtTwo spaceships A and B are exploring a new planet. Relative to this planet, spaceship A has a speed of 0.60c, and spaceship B has a speed of 0.78c. What is the ratio DA/DB of the values for the planet's diameter that each spaceship measures in a direction that is parallel to its motion? Number Units
- Particle A has a rest energy of 1192 MeV and is moving through the laboratory in the positive x direction with a speed of 0.450c. It decays into particle B (rest energy = 1116 MeV) and a photon; particle A disappears in the decay process. Particle B moves at a speed of 0.400c at an angle of 3.03° with the positive x axis. The photon moves in a direction at an angle with the positive x axis. A 0.45c What are the 0.40c photon Ө 3.03⁰ B in MeVs and your answer in three significant digits. in degrees of the photon? GiveThe half‑life of a certain subatomic particle at rest is about 1.00×10−8 s. With what speed V is a beam of these particles moving if one‑half of them decay in 4.00×10−8 s as measured in the laboratory? V = ? m/sAn alpha particle (6.70 x 10^-27kg, 3.2 x 10^-19Coulomb) travels at 0.965c. What is its: (a) resting energy (eV) (b) total energy(eV) (c) kinetic energy(eV)
- Please please please answer everything as fast as possible please NOTE: This is not a graded question, this is not a graded questionA spaceship of mass 2.00 x 106 kg is to be accelerated to a speed of 0.730c. (a) What minimum amount of energy does this acceleration require from the spaceship's fuel, assuming perfect efficiency? 19.23e22 X Your response differs from the correct answer by more than 100%. J (b) How much fuel would it take to provide this much energy if all the rest energy of the fuel could be transformed to kinetic energy of the spaceship? 2.136e6 X Your response differs from the correct answer by more than 100%. kg