F1 has a magnitude of 20 N and is directed 600600 above the horizontal. What is the x-component of F1?
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F1 has a magnitude of 20 N and is directed 600600 above the horizontal. What is the x-component of F1?
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- When adding vectors (3,30°) + (5,120) + (7,225°), what is the magnitude of the resultant? О 3.96 O 2.81 О 5.72 O 6.47 O 4.93please please help!!Lisa and Gina are pulling Aaron and his little red wagon. Gina pulls N 10° E with a force of 160 newton. Lisa pulls N 30° W with a force of 190 newtons. what is the magnitude and direction of the resultant
- Rain is falling steadily, but there is no wind. You are on a bus that moves at 35.0 km/hr, and you see that the rain appears to be falling at an angle of 42o with respect to the vertical. What is the vertical speed of the rain drops?consider two vectors : A=4i+6j+2k B=-2i-4j+0k find A+B and it's directionA car comes to a bridge during a storm and finds the bridge washed out. The driver must get to the other side, so he decides to try leaping it with his car. The side the car is on is 20.3 mm above the river, whereas the opposite side is a mere 1.6 mm above the river. The river itself is a raging torrent 57.0 mm wide. For help with math skills, you may want to review: Vector Magnitudes For general problem-solving tips and strategies for this topic, you may want to view a Video Tutor Solution of Different initial and final heights. a. How fast should the car be traveling just as it leaves the cliff in order to just clear the river and land safely on the opposite side? Express your answer in meters per second. b. What is the speed of the car just before it lands safely on the other side? Express your answer in meters per second.
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- 46. ECHALK The three displacement vectors in the drawing have mag- nitudes of A = 5.00 m, B = 5.00 m, and C= 4.00 m. Find the resultant (magnitude and directional angle) of the three vectors by means of the com- ponent method. Express the directional angle as an angle above the positive or negative x axis. PROBLEM 46 Ä 20.0° C B 60.0⁰ +1Ajy.4B) what is the position vector ? r(t)