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- A person going for a walk follows the path shown in Figure P1.51. The total trip consists of four straight-line paths. At the end of the walk, what is the persons resultant displacement measured from the starting point? Figure P1.51What is the order of magnitude difference between something that operates in nanoseconds and something that operates in milliseconds?How many magnitudes separate something that operates in nanoseconds from something that operates in milliseconds?
- A furlong is a distance of 220 yards. A fortnight is a time period of 2 weeks. A race horse is running at a speed of 5.2 yards per second. What is his speed in furlongs per fortnight?.5What is the difference between something that operates in nanoseconds and something that runs in milliseconds in terms of order of magnitude?Bill runs at a steady pace of 5.00 m/s. How long will it take Bill to run 1.00 mile? (N.B. 1 mile =5280 feet). Answer in seconds.
- In terms of the scale of magnitude, what is the difference between something that operates in milliseconds and something that works in nanoseconds?What kind of order of magnitude distinction can be made between something that operates in milliseconds and another that operates in nanoseconds?What is the difference in magnitude between something operating in nanoseconds and something operating in milliseconds?
- In addition to 1 m = 39.37 in., the following exact conversion equivalents are given: 1 mile = 5280 ft, 1 ft = 12 in, 1 hour= 60 min and 1 min = 60 s If a narticle has a velocity of 8.4 miles per hour, its velocity, in m/s, is closest to O 3.4 m/s O 3.0 m/s O 4.1 m/s. O 4.5 m/s O 3.8 m/s. Submit Request AnswerAccording to Timothy Treadwell in 2001 "Now, the bears I live with average, the males are on average twelve hundred pounds. They're the largest bears in the world and they've been clocked at 41 [mph] and they've run a hundred meter dash in 5.85 seconds which human on stimulants doesn't even approach. a. Compute the speed of a grizzly bear using Mr. Treadwell's hundred-meter statement. b. Compute the momentum of a grizzly bear using the speed you calculated in part a. and the average mass stated by Mr. Treadwell. c. How fast would a 250 lb man have to run to have the same momentum you calculated in part b? d. How fast would a 4000 lb car have to drive to have the same momentum you calculated in part b?A car is traveling at a constant speed of 32.7km/h. It begins to accelerate at a rate of 6.2m/s2 for 9.2 seconds. How far (in meters) does it travel during this time? Do NOT include units in your answer. Round your answer to 2 decimal places. Do NOT change to scientific notation. Ignore significant figures.