Required information NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. An overhead door is guided by wheels at A and B that roll in horizontal and vertical tracks. When = 40°, the velocity of wheel B is 2.1 ft/s upward. 5 ft A B 5 ft Determine the velocity of end D of the door. The velocity of end D of the door is ft/s A D
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- Solve each problem correctly and systematically. Your answers should be in 3 decimal places. A projectile is fired with an initial velocity of 320m/s at an angle of 15o with the horizontal. 1. Find the velocity, in m/s, of the projectile along the horizontal after 10s. 2. Find the velocity, in m/s, of the projectile along the vertical after 10s. 3. Find the resultant of the velocity, in m/s, of the projectile after 10s. 4. Find the direction, in deg, with respect to the horizontal, after 10s. 5. Find the position, in meters, of the projectile along the horizontal after 10s. 6. Find the position, in meters, of the projectile along the vertical after 10s.Can you help me answer this? Solve separately by letter and explain how you get the answer. Thank you. About projectile motion.Introduction: For this Laboratory, we are going to use the Phet Interactive Laboratory to determine the effects of initial velocity, angle and mass to the maximum height, time of flight and range of a projectile. Figure 1. Projectile Motion Procedure I (Varying Projectile Mass): 1) On your browser, type the following url: https://phet.colorado.edu/sims/html/projectile-motion/latest/projectile-motion_en.html 2) After the page loads, select the Lab option that shows on your computer screen. This should bring you to the screen as you see in Figure 1. 3) Set the angle of the cannon at 60 degrees with respect to the horizontal. 4) Set the initial velocity of the cannon at 5 m/s. 5) On the table located on the upper right hand corner of the screen, select different cannon mass values as shown on table 1. 6) Determine the total time of flight, height and range of the cannon projectile using the floating table located at the top of the screen. 7) Fill out all of the…
- Use three decimal places on answers Problem1: A projectile leaves at a velocity of 50 m/s at an angle of 30° with the horizontal. a. Find the maximum vertical distance it could reach. b. Find the maximum horizontal distance it could reach. c. Find the total time which the projectile could reach the ground.Solve each problem correctly and systematically. Your answers should be in 3 decimal places. A projectile is fired with an initial velocity of 320m/s at an angle of 15 deg with the horizontal. 1. Find the position, in meters, of the projectile along the horizontal after 10s 2. Find the position, in meters, of the projectile along the vertical after 10s. 3. Find the velocity, in m/s, of the projectile along the horizontal after 10s. 4. Find the velocity, in m/s, of the projectile along the vertical after 10s. 5. Find the resultant of the velocity, in m/s, of the projectile after 10s. 6. Find the direction, in deg, with respect to the horizontal, after 10s.Solve each problem correctly and systematically. Your answers should be in 3 decimal places. A projectile is fired with an initial velocity of 320m/s at an angle of 15o with the horizontal. 1. Find the direction, in deg, with respect to the horizontal, after 10s. 2. Find the resultant of the velocity, in m/s, of the projectile after 10s. 3. Find the velocity, in m/s, of the projectile along the vertical after 10s.
- A hockey puck is moving with a speed of 15.11[m/s] at an angle of 35˚ below the positive x-axis. What is the y-component of the velocity? Express your answer in terms of m/s. Be sure to use the correct sign in your answer.Please help A car travelling North turns and goes West? What direction was the acceleration - N - NW - W - SW - S - SE - E - NE Please help with the second question. Which is below please show workA football is kicked at ground level with a speed of 18.9 m/sm/s at an angle of 36.0 ∘∘ to the horizontal. Part A How much later does it hit the ground? Express your answer using three significant figures and include the appropriate units.
- Please refer to the question that is attached. The boat in the picture below is tring to travel north to cross the river at 10 m/s, however the water in the river is flowing west at 4.0 m/s. The boat instead angles itself to counteract the flow of the river. For this problem orient the coordinate axes with x pointing east and y pointing north. Question A: which of the following best represents the velocity of the water? 1. < 0, -4.0 > m/s 2. < 4.0, 0 > m/s 3. < 0, 4.0 > m/s 4. < -4.0, 0 > m/s Question B: Which of the following best represents the desired velocity of the boat? 1. < 0, 10.0 > m/s 2. < -10.0, 0 > m/s 3. < 10.0, 0 > m/s 4. < 0, -10.0 > m/s Question C: Which of the follwing best represents the adjusted velocity of the boat? 1. < -10.0, -4 > m/s 2. < 4, 10.0 > m/s…A girl on a bicycle takes 15.2 s to ride half way around a circular track of radius 10.5 m (see the figure below). What is the girl's average speed (in m/s)? What is the magnitude of her average velocity (in m/s)?A child is practicing for a BMX race. His speed remains constant as he goes counterclockwise around a level track with two nearly straight sections and two nearly semicircular sections, as shown in the aerial view of Figure CQ7.12. (a) What are the directions of his velocity at points A, B, and C? For each point, choose one: north, south, east, west, or nonexistent, (b) What are the directions of his acceleration at points A, B, and C? Figure CQ7.12