the relationship between gravitational force and radius.?
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the relationship between gravitational force and
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- Which of the following will emit an EM WAVE? Choose all that apply. a. A proton moving in a circle while traveling at a constant speed of 20 in/min. b. An electron moving at a constant velocity of 60 mph due north. c. An ion that is stationary. d. A neutrino that is speeding up from 1000 m/s to 1200 m/s. e. A neutron that is slowing down from 500 km/h to 400 km/h.A cathode ray consists of electrons that have been accelerated from - to + charged plates. The speed at the negative plate is 0, and an electron reaches the positive plate with speed ß c. (A) Use classical mechanics. Calculate ß. (B) Use special relativity. Calculate B. Potential difference = 107 keV; (A) 0.647 You are correct. Your receipt no. is 152-8546 (b) 415 Submit Answer Incorrect. Tries 8/12 Previous Tries Previous TriesCalculate the mass of 1.5C of electrons
- 0.5m away 3. You (who have a mass of 72 kg) are floating out in space holding an 11 kg ball. It also just so happens that your body carried an electric charge of 60 μC and the ball holds a charge of -310 mc. Suppose you throw the ball away from you at a speed of 13 m/s. How far away from you does the ball get before coming back? (If you determine that the ball will never come back, determine the speed with which it will forever drift away from you.). It is worth mentioning that you will also move backwards when you throw the ball forwards. Don't forget this.A proton experiences a 5,000V decrease in electric potential. Assuming the proton started from rest: a. Express its energy in Mev b. After being accelerated, the proton enters a 5.0 Tesla magnetic field perpendicular to its velocity. Calculate the radius of the circle the proton will travel.Using the given charge-to-mass ratios for electrons and protons, and knowing the magnitudes of their charges are equal, what is the ratio of the proton's mass to the electron's? (The charge-to-mass ratios for electrons and protons are −1.7588×1011 C/kg and 9.5788e7 C/kg , respectively. Note that since the charge-to-mass ratios are given to five-digit accuracy, your answer may differ from the accepted ratio. Round your answer to at least five significant figures.) Mp/Me =part 1 of 2 Through what potential difference would an electron starting from rest need to acceler- ate to achieve a speed of 60.0% of the speed of light? Disregard relativistic effects. The speed of light is 3 x 108 m/s and the elemental charge is 1.602 x 10-19 C. Answer in units of V. Answer in units of V.Calculate the gravitational force between two protons at a distance of 10^-15 m apart. Mass of proton = 1.7 x 10^-27 kg. G = 6.67 X 10^-11 N m^2 / kg^2. Is the gravitational force attractive or repulsive?1. Two electrically charged pith balls, each having a mass of 0.15g are suspended from light threads of equal length. Determine the magnitude of the horizontal repulsive force, F, acting on each ball if the measured distance between them is r = 200mm. 50 mm 150 mm 150 mm --F r= 200 mm 2. Determine the magnitude of P and the coordinate direction angles of F3 required for equilibrium of the particle. Note that F3 acts in the octant shown. (-1 ft.-7 ft, 4 ft) F= 360 Ib F- 120 Ib 20 F- 300 Ib F= 200 llyWhich of the following will emit an EM WAVE? Choose all that apply. A positive ion that is speeding up from 2800 m/s to 3000 m/s. A proton moving at a constant velocity of 50 mph due north. A neutron that is slowing down from 400 km/h to 350 km/h. A negative ion moving in a circle while traveling at a constant speed of 40 in/min. An electron that is stationary.#31SEE MORE QUESTIONS