Suppose you were hovering stationary as in question 6 above, except now with sheet charge density 1.11 x 10^-6 C and your mass including the suit 76.1 kg. Suppose that while you were hovering, someone threw you a rock of mass 8.5 kg, and that you caught it. What would now be your rate of acceleration toward the ground? O 0.99 m/s^2 9.81 m/s^2 O 8.82 m/s^2 O 1.39 m/s^2
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- A neutron lives 900 s when at rest relative to a observer. How fast is the neutron moving relative to a observer who measures its life span to be 2065 s?Part 1: A proton is accelerated from rest through apotential difference of 25599 V.What is the kinetic energy of this protonafter this acceleration? The mass of a protonis 1.673 × 10−27 kg and the elemental chargeis 1.602 × 10−19 C.Answer in units of J. Part 2: What is the speed of the proton after thisacceleration?Answer in units of m/s.6)The courdinate of a dust particle in centimeters is given by the eavation X166 t- 3 wherethe time tis in seconds.the dust parricieis momentanily at rest at what time: B 35 0/25 D55 B.
- Hello! Please provide detailed solutions as this is will be a preparation for my finals. Thank you!TOPIC: COULOMBS LAWTwo particles A and B are released from rest, having equal of -5x10^-6 C and initially separated from each other by 0.025 m. The masses of particles A and B are 5.25 x 10^-6 kg and 3.75 x 10^-6 kg, respectively. Find the magnitude of the initial accelerations of particles A and B.I have attached the reference formulas that we are using. Thank you!A meterstick moving at 0.21c relative to the Earth's surface approaches an observer at rest with respect to the Earth's surface. What is the meterstick's l'ength as measured by the observer? Give your answer in meter with three digits after the decimal point, do not put the unit next to your answer.A particle is created in the upper atmosphere; 18km above the surfaceof the Earth as measured by someone on the ground. The particle travelstowards Earth’s surface at a speed of 0.95c as measured by someone on theground. The particle travels for a time period 2.0 × 10−5s as measured inthe particle’s rest frame. The question is attached as an image and the correct answer is A, could someone please explain why this is
- dont use AI A proton has mass 1.7x10-27 kg. What is the magnitude of the impulse required in the direction of motion to increase its speed from 0.991c to 0.994c?The figure snows velociny Vs time curns for two cars that more along a straught actuvanng from rest at traight Prom rst a+ the Same 3 tar line. arting a how far apart are me cars after t scconds, where Osts 60? b now far a part are he cars after 60sconds? v (A /s) 180 एप t(3) COA proton travels at 99.9912% of the speed of light. An antiproton travels in the opposite direction at the same speed. What is the relative speed vrel of the two particles in multiples of the speed of light c? Give an answer to 10 decimal places.
- a) find velocit r ņ afder cullision. is moving to Hhe right mass m = with velou'ty v= 1"s and it collide s wi th at rest , all in one dimension. After He colli sion, velocity f m, is O.2' b) is th collisin elasdie or inelastic? K =! mvBased on a grade 11 physics student, answer the following question:The rebels are fighting the imperials on the icy planet Hoth. Han Solo didn’t dress for the weather (this ain’t Tattooine bud!), and is frozen solid (1234 kg of ice, at -123˚C ). Fortunately for Han, an AT-AT walker shoots its blasters and misses its target but hits Han which vaporizes the ice and brings him to a piping 102˚C. How much heat was added to Han Solo to turn him from a frozen chunk into a ‘Luke-warm’ rebel?A Parlicle depicts its motion in Such a way that its position weetor at time ť' is Pexirgi where, x=a cokt amd Yz bsinkt I a forticle of mass m' moves with velocity in this field, if 'E' is constant totol energy, then determine the expression for it. INhat important Physical Princifal doer this illustratez