1. Enter = 0° into Equation 1. Simplify Equation 1 for 0 = 0° and record your equation below. 2. Rearrange the equation you just found in Step 1 to solve for the launch speed vo.
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- A car travels 90 meters due north in 15 seconds. Then the car turns 32° west of north and travels 40 meters. What is the magnitude and direction? what analytical method is most appropriate (and shortest method) for the problem? polygon method b. component method c. parallelogram method d. Law of sines and cosinesIVO To reach a picnic basket, an ant walks from his hill located at 4.00 m, 52.0° North of East to the basket located at 11.0 m, 36.0° South of East. How far did the ant walk? 15. A. 12.69 m D. 9.729 m B. 8.708 m E. 12.88 m 11.02 m C. 11.57 m F. 1--1 [carpet-13] IXXIU A velocity has magnitude 19_m/s and points downward. For a traditional x-y coordinate system, find the velocity's x and y components. 16. x-component MacBook Pro4. DETAILS MY NOTES = Let B = 5.50 m at 60.0°. C and A have equal magnitudes. The direction angle of C is larger than that of A by 25.0°. Let A B 29.1 m² and B C 33.9 m². Find the magnitude (in m) and direction (in degrees) of A. magnitude direction x °
- 4. Suppose you leave you house, hike 2.0 mi due east, then 3.0 mi due north, and then 6.0 miles 30 north of west to your favorite tree. Find the total displacement, magnitude and direction, from your house to the tree. 6 mi 30° 2m² 3 miPls solve this question quickly and 100% correct. Also could you do it handwritten for me to better understand thank you. A small airplane starts flying at a constant speed of 281 km/h on a heading of N79W. A 68 km/h wind is blowing from N13E. Determine the ground velocity of the airplane. Give direction as a quadrant bearing. Include diagram showing the vector addition with your solution.3. A hiker walks 1.5 km at an angle of 48 degrees north of east 7, and then hikes 3.0 km at an angle of 30 degrees north of west . What is the displacement of the hiker from the origin (magnitude and direction)? Determine the magnitude and direction by adding the vectors graphically and mathematically. Be sure to attach your graph. Magnitude (from graph): Direction (from graph): Magnitude (mathematical): Direction (mathematical):