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The answer to this is 365 mm above G and 227 mm to the right of G. How do I get to that answer?
![A machine component is subjected to the forces and
couples shown. The component is to be held in place by a
single rivet that can resist a force but not a couple. The
location of the rivet hole on line FG and line GH is....
/120 N
240 mm
200 N
70°
15
E
D
H
50 mm
42 Nm
|80 N
520 mm
C
60 N
40 Nm
180 mm
F
В
-50 mm
50 mm
640 mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd7361416-46ab-4462-bff3-5be4f0c0d917%2F0d5e97cd-84e1-4e44-9231-46fd4e6941d0%2F13jjc8v_processed.jpeg&w=3840&q=75)
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- (d) 61.0 cm from the center of the sphere kN/CCalculate the speed (in m/s) of an electron and a proton with a kinetic energy of 1.15 electron volt (eV). (The electron and proton masses are me = 9.11 ✕ 10−31 kg and mp = 1.67 ✕ 10−27 kg. Boltzmann's constant is kB = 1.38 ✕ 10−23 J/K.) (a) an electron m/s (b) a proton m/s (c) Calculate the average translational kinetic energy in eV of a 3.09 ✕ 102 K ideal gas particle. (Recall from Topic 10 that 1 2 mv2 = 3 2 kBT.) eVAttached is question.
- An unstable particle at rest breaks up into two fragments of unequal mass. The mass of the lighter fragment is equal to 2.60 x 10° -28 kg and that of the heavier fragment is 1.66 × 10° -27 kg. If the lighter fragment has a speed of 0.893c after the breakup, what is the speed of the heavier fragment?A moving spaceship is measured by a stationary observer to have a length that is four-fifths of its proper length. What is the speed v of the spaceship relative to the observer? The speed of light is c = 3.00 × 10³ m/s. U = m/sA laser pointer is placed on a platform that rotates at a rate of 19 revolutions per minute. The beam hits a wall 8 m away, producing a dot of light that moves horizontally along the wall. Let 0 be the angle between the beam and the line through the searchlight perpendicular to the wall. How fast is this dot moving when 0 = Wall π ? 6 8 m Laser (Use decimal notation. Give your answer to one decimal place.) velocity of the dot: m/min
- A rocket cruising past earth at 0.500 ⋅c⋅c shoots a bullet out the back door, opposite the rocket's motion, at 0.750 ⋅c⋅c relative to the rocket. What is the bullet's speed relative to the earth? What is the direction of its movement? along the rocket's motion opposite the rocket's motion3. A rocket launched outward from Earth has a speed of 0.34c relative to the Earth. The rocket is directed toward an incoming meteor that may hit the planet. If the meteor moves with a speed of 0.84c relative to the rocket and directly toward it, what is the speed of the meteor as observed from Earth?Consider the case of two kids, Sam and Peter, riding a train and playing catch in an empty car. The train is moving to the right at 10 m/s. The kids can throw the ball at a speed of 5 m/s. The side of the car is transparent and a poodle named Max can see the boys playing inside. What is the speed and direction of Sam’s throw to Peter, according to Max? Explain.
- 106 MeV) is Extra: A very rare but occasionally observed decay of a muon µ (rest energy = into an electron e (rest energy 0.511 MeV) and a photon y (rest energy decays at rest by this mode, what is the kinetic energy of the electron and photon combined after the decay? (1M V = 10°eV = 1.6 x 10-13 J) zero). If a muonExtra: You have two disks lying flat on ice, one has a string wrapped around the outside edge which unravels as you pull, the other has a string attached to a peg in the center. The discs have equal masses and dimensions and are initially at rest. If you start pulling both strings at the same time with the same constant force, at some time t later which of the two disks has moved further? Or have they both moved the same distance? Explain.James (mass 81.0 kg) and Ramon (mass 57.0 kg) are 20.0 m apart on a frozen pond. Midway between them is a mug of their favorite beverage. They pull on the ends of a light rope stretched between them. Ramon pulls on the rope to give himself a speed of 1.10 m/s. What is James's speed? It must have the proper dimensions of speed.