ow do you derive velocity from the time dilation formula t=t0/sq rt 1-(v/c)
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how do you derive velocity from the time dilation formula t=t0/sq rt 1-(v/c)^2
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- QUESTION 1 You have obtained the following data in the lab: Time (s) - X axis Position (m) - Y axis 43 128 48 120 56 135 61 143 67 141 70 152 The correlation coefficient r for the data obtained is [Note: Roundr to three deciimal places.] O 0.798 0.978 -0.897 0.897Answers to Lab Questions: 1. Based on the position vs time graph in the simulation 1, what is the functional form of the position according to your best fit? 2. Based on the velocity vs time graph in the simulation 1, what is the functional form of the velocity accoršing to your best fit?can you show me how to do it \?
- Two astronauts are playing catch in a zero gravitational field. Astronaut 1 of mass m₁ is initially moving to the right with speed v₁. Astronaut 2 of mass m₂ is initially moving to the right with speed v2 > ₁. Astronaut 1 throws a ball of mass m with speed u relative to herself in a direction opposite to her motion. Astronaut 2 catches the ball. The final speed of astronaut 1 is vf, and the final speed of astronaut 2 is vf,2. ((m+m_1)*(v_1)+(m*u))/m_1 171. Vf₂1 = (m I m.) (21) + (m. 2) m, m. m mo Before m During After m₁ (Part a) What is the speed vf, of astronaut 1 after throwing the ball? Express you answer in terms of some or all of the following: m, m_1 for m₁, m_2 for m₂, u, and v_1 for v₁. m₁ X Calculator ▸Good day to you I was looking through a particular problem found in Richard Wolfson Essential University Physics Volume one, 4th Edition textbook, on chapter 3, problem 68. Your solution derives an inital speed equation, however, I don't know how it was derived. was it a manipulation of the x and y components of the v2 = v0^2 +2as or something else entirely? Thanks in advanceData: Distance 2.00 m 2.00 m 2.00 m Time (s) Exp Acceleration (m/s²) 2.08 m/s² 2 2.35 m/s2 2.35 m/s2 Percentage error: [(Theoretical value - Experimental value)]*100/( Theoretical value) Average Acceleration: Percentage Error: 。96 -85 85 . Questions: 1. Is your measurement close to the actual acceleration due to gravity? If not, what are the reasons?
- High-speed motion pictures (3500 frames/second) of a jumping 230 μg flea yielded the data to plot the flea's acceleration as a function of time as shown in the figure ( Figure 1). (See "The Flying Leap of the Flea," by M. Rothschild et al. in the November 1973 Scientific American.) This flea was about 2 mm long and jumped at a nearly vertical takeoff angle. Use the measurements shown on the graph to answer the questions. Figure alg 150 100 50 0 0 0.5 1.0 1.5 Part E Use the graph to find the flea's maximum speed. Express your answer in meters per second to two significant figures. IVE] ΑΣΦ 3 v=1.6 Submit Previous Answers Request Answer ? X Incorrect; Try Again; 2 attempts remaining m/sSuperman needs to save Lois from the clutches of Lex Luthor. After flying for 6 seconds, he is 1746 meters from her. Then at 14 seconds he is 1274 meters from her.What is Superman's average rate? meters per secondHow far does Superman fly every 12 seconds? metersHow close to Lois is Superman after 26 seconds? metersSee photo for full details