Problem 15 A point charge with charge qi = +5.00 nC is fixed at the origin. A second point charge with charge q2 = -6.00 nC is located on the x axis at x = 5.00 m. 1) Where along the x axis will a third point charge of q = +2.00 nC charge need to be for the net electric force on it du to the two fixed charges to be equal to zero? (Express your answer to three significant figures.) 5.24e2 m Submit
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- Which of the following is one of the postulates of Special Relativity? Time dilates and length contracts as an object approaches relativistic speeds. . Events that are simultaneous in one frame may not be simultaneous in another. . All laws of physics are of the same form in all inertial frames of reference. The speed of light in vacuum is constant and dependent on the speed of the source.I'm having trouble completing the problem I've attached a picture of below. I was able to find the the Earth's average speed in m/s relative to the sun by doing (2pi*(1.49x10^11))/31536000. But I am struggling to find the average velocity for the same thing over a period of one year in m/s. I was wondering how to calculate that? I've tried doing the (final velocity-initial velocity)/2 but the program doesn't accept my answer when using that approach.How many meters are there in 3.2 light year (s), if the speed of light is 3 x 108 m/s. This number may be very large so do not round or truncate your number. Answer:
- I need help in the following questions. 2.1.1) ? 2.1.2) ? 2.1.3) ?Please walk me through the solution using variables, not the given values.The nearest star to Earth is Proxima Centauri, 4.2 light-years away. Part A At what constant velocity must a spacecraft travel from Earth if it is to reach the star in 3.6 years, as measured by travelers on the spacecraft? Express your answer using two significant figures. IVE ΑΣΦ v= 0.805 Submit Part B X Incorrect; Try Again; 2 attempts remaining Previous Answers Request Answer How long does the trip take according to Earth observers? Express your answer using two significant figures. D ΠΫΠΙ ΑΣΦ t = 5.2 Submit ? Previous Answers Request Answer ? X Incorrect; Try Again; 4 attempts remaining C years
- Show complete solution please thank youI have asked kindly for answers to be in a manner that I understand. i do not understand Physics. Please explain to me what this is supposed to be in terms that I understand. Thank You. Pi=Pf0=4×10-3×v+6.82×-0.254×10-3×v=6.82×0.25v=6.82×0.254×10-3v=426.25 m/sPlease please please answer everything as fast as possible please NOTE: This is not a graded question, this is not a graded question
- A newly constructed spaceship has a length of 100.0 m (as measured in the rest frame). This spaceship departs the Earth, bound for a distant planet located a distance D = 50.0 light-years away from the Earth. It travels at a constant speed of v = 0.900c. Part A) As measured by Mission Control on Earth, how long does the journey take? Enter the numerical value in units of years. Part B) According to an astronaut on the spaceship, how long does the journey take? Enter the numerical value in units of years. Part C) As measured by Mission Control on Earth, what is the spaceship's apparent length? Enter the numerical value in SI unitsThe Millennium Falcon is approximately 35.2 m long. There are conflicting reports, but the Fàlcon made the Kessel Run in approximately 12.95 parsecs. This is an odd unit to measure speed with as a parsec is a unit of length equal to 3.26 light-year. The science FICTION comes in when you consider that ships in Star Wars use hyperdrive to travel faster than the speed of light, so they are able to make jumps through space. Han Solo picked difficult or dangerous points to jump between to make the trip so short.tet's imagine that the Millennium Falcon travels at 0.95c during the 12.95 parsec Kessel Run. What distance, in light-year, does an observer at the finish line measure for the trip? Don't forget to convert parsec to light-year. light-year What distance, in light-year, does Han Solo measure for the trip as he pilots the ship? | light-year