BIO Deltoid Muscle A crossing guard holds a STOP sign at arm’s length, as shown in Figure 11-63. Her arm is horizontal, and we assume that the deltoid muscle is the only muscle supporting her arm The weight of her upper arm is W u = 18 N, the weight of her lower arm is W 1 = 11 N, the weight of her hand is W h = 4.0 N, and the weight of the sign is W s = 8.9 N. The location where each of these forces acts on the arm is indicated in the figure A force of magnitude f d is exerted on the humerus by the deltoid, and the shoulder joint exerts a force on the humerus with horizontal and vertical components given by f x and f y respectively. (a) Is the magnitude of f x greater than less than or equal to the magnitude of f x ? Explain. Find (b) f d , (c) f x and (d) f y (The weights in Figure 11-63 are drawn to scale; the unknown forces are to be determined. If a force is found to be negative, its direction is opposite to that shown )
BIO Deltoid Muscle A crossing guard holds a STOP sign at arm’s length, as shown in Figure 11-63. Her arm is horizontal, and we assume that the deltoid muscle is the only muscle supporting her arm The weight of her upper arm is W u = 18 N, the weight of her lower arm is W 1 = 11 N, the weight of her hand is W h = 4.0 N, and the weight of the sign is W s = 8.9 N. The location where each of these forces acts on the arm is indicated in the figure A force of magnitude f d is exerted on the humerus by the deltoid, and the shoulder joint exerts a force on the humerus with horizontal and vertical components given by f x and f y respectively. (a) Is the magnitude of f x greater than less than or equal to the magnitude of f x ? Explain. Find (b) f d , (c) f x and (d) f y (The weights in Figure 11-63 are drawn to scale; the unknown forces are to be determined. If a force is found to be negative, its direction is opposite to that shown )
BIO Deltoid Muscle A crossing guard holds a STOP sign at arm’s length, as shown in Figure 11-63. Her arm is horizontal, and we assume that the deltoid muscle is the only muscle supporting her arm The weight of her upper arm is Wu = 18 N, the weight of her lower arm is W1 = 11 N, the weight of her hand is Wh = 4.0 N, and the weight of the sign is Ws = 8.9 N. The location where each of these forces acts on the arm is indicated in the figure A force of magnitude fd is exerted on the humerus by the deltoid, and the shoulder joint exerts a force on the humerus with horizontal and vertical components given by fx and fy respectively. (a) Is the magnitude of fx greater than less than or equal to the magnitude offx? Explain. Find (b)fd, (c)fx and (d)fy (The weights in Figure 11-63 are drawn to scale; the unknown forces are to be determined. If a force is found to be negative, its direction is opposite to that shown )
Three point-like charges in the attached image are placed at the corners of an equilateral triangle as shown in the figure. Each side of the triangle has a length of 38.0 cm, and the point (C) is located half way between q1 and q3 along the side. Find the magnitude of the electric field at point (C). Let q1 = −2.80 µC, q2 = −3.40 µC, and q3 = −4.50 µC. Thank you.
Three point-like charges are placed as shown in the attach image, where r1 = r2 = 44.0 cm. Find the magnitude of the electric force exerted on the charge q3. Let q1 = -1.90 uC, q2 = -2.60 uC, and q3 = +3.60 uC. Thank you.
The drawing attached shows an edge-on view of two planar surfaces that intersect and are mutually perpendicular. Surface (1) has an area of 1.90 m², while Surface (2) has an area of 3.90 m². The electric field in magnitude of 215 N/C. Find the magnitude of the electric flux through surface (1 and 2 combined) if the angle theta made between the electric field with surface (2) is 30.0 degrees. Thank you.
Human Physiology: An Integrated Approach (8th Edition)
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.