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Question 3 The diagram below shows a quarterback throwing a ball. All the weight of the...
Numerical Methods for Engineers and Scientists
3rd Edition – An Introduction with Applications Using
MATLAB - Gilat | Subramaniam Problem 3.29
A quarterback throws a pass to his wide receiver running a
route. The quarterback releases the ball at a height of hQ . The
wide receiver is supposed to catch theball straight down the field
60 ft away at a height of h R .
The equation that describes the motion of the football is the
familiar equation of...
Need help with motion diagram question
16. The four motion diagrams below show an initial point 0 and a final point I. A pictorial representation would define the five symbols: o. , Vors Vir and a for horizontal motion and equivalent symbols with y for vertical motion. Determine whether each of these quantities is positive, negative, or zero. Give your answer by writing +-or 0 in the table below Has initial velocity 0 Storts Xo or yo or y or...
The diagram below shows two negatively charged metal spheres,
Sphere A and Sphere B. A positively charged pith ball is placed at
the three locations shown. a)At each one of the three
locations, draw two field vectors, one for each of the two charged
spheres. Label each vector as EA and EB. For
each vector, draw the correct direction of the vector, and an
approximate relative length. These vectors represent the force that
the electric field exerts on the positive...
3. A ball of mass m is attached to a vertical pole with a length of string L and spun with a constant speed v in a horizontal circle. a. Draw a free body diagram of the ball below: (5) ( b. Write expressions for Newton's 2nd Law in the x- and y-directions. (20) Assume that m = 3.50 kg, and the speed of the ball is 6.50 m/s. c. Find the magnitude of the tension in the string. (5)...
Please show all work, draw a Free Body diagram and answer the
question completely! Thanks!
Problem 3: A concrete block is lifted by a hoisting mechanism in which the cables are securely wrapped around the respective drums. The drums are fastened together and rotate as a single unit at their mass center at O. The combined mass of the drums is 150 [kg], and the radius of gyration at O is 450 [mm]. A constant tension of 1.8 [kN] is...
QUESTION 3 A student presses a book between his hands, as the drawing indicates. The forces that he exerts on the front and back covers of the book are perpendicular to the book and are horizontal. The book's mass is 1.5 kg Calculate the wight of the book in N with 3 significant figures. (Assume acceleration due to gravity g 9.80 m/s, down) QUESTION 4 A student presses a book between his hands, as the drawing indicates. The forces that...
1. A ball of weight 5.0 newtons is thrown towards the ceiling and hits with the speed shown at an angle = 37° from the vertical. The ball is in contact with the ceiling for 0.1 second. Use cos(37°) = 0.8 and sin(37°) = 0.6 a. Determine the magnitude and direction of the average acceleration of the ball while it is in contact with the ceiling. (+4) 20" magnitude -.. direction (up/down) = b. Draw the free body diagram showing...
10 points Saved QUESTION 2 Which free-body force diagram below is correct for a baseball hit at an angle above the horizontal, just after it leaves the bat? (ignore air resistance) 1. A 2. 3. 4. D
Please draw the forces acting
on the free body diagram if necessary and answer the question
clearly. Thank you.
J7) A boy of mass m stands at the edge of a stationary merry-go-round of mass M and radius R. A friend standing outside throws a ball of mass m' at him with a horizontal velocity of v in a direction tangent to the circumference of the merry-go-round. m (a) Assuming that the merry-go-round is free to rotate about a vertical...
Q8. (6 pts.) Physics 211 Review: Static Equilibrium, Vector Addition & Trigonometry The figure below shows a mass M suspended from a vertical string. A horizontal force F is applied to the mass as shown, so that it is deflected by an angle 6 from the vertical. The entire system is in static equilibrium. Draw the free body diagram for the forces acting on the mass and determine an expression that relates F to the mass Mand the angle e....