2D force systems Dr Hazim Umran Abwan Co 1- Determine the resultant R of the two forces shown by (a) applying the parallelogram rule for yector addition and (b) summing scalar components. Ans 872 N 361 400 N
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- A vector force of F1 of 3N is due West , and a vector force of F2 of 8 N is directed in 40 degrees East of South. a. Draw each vector; calculate their components, and use the component method to determine the magnitude and the direction of the resultant vector F = F1 + F2 .The vector product of vectors A and B has magnitude 20.0 m² and is in the+z-direction. Vector A has magnitude 8.0 m and is in the -z-direction. Vector B has no z-component What is the direction angle 0 of vector B measured from the +y-direction to the +z-direction?Solve it correctly please.
- STATICS OF RIGID BODIES PRODUCTS OF VECTOR VECTOR CROSS AND DOT PRODUCTwo vectors are defined in component form below. Use them to perform the following exercises. Note: £, §, and 2 are unit vectors of the Cartesian coordinate system defined by £ × 9 = z. S = - D Č = -152 + 82 D = -42 – 39 T = Č XD F = 5 le| = 17 Determine S. Show your ster Determine T. (Your answer should be an expression in component form.) Show your steps Determine the smallest angle between D and ý when they are drawn tail-to-tail.How would I figure out the adding and subtracting parallel vectors? how would I figure out the adding and subtracting anti-parallel vectors?
- Help!!! Answer all clearlyDon't use chat gpt It Chatgpt means downvote1. Find the x-component of this vector: C = 300 N, 50 deg W of S 2. Write this vector in scalar notation form: B = 10i + 12j meters 3. Find the resultant vector: A = 300 N, NorthB = 400 N, West 4. Find the dot product of these two vectors: A = 10i meters, B = 10j meters
- The acceleration due to gravity, g, is constant at sea level on the Earth's surface. However, the acceleration decreases as an object moves away from the Earth's surface due to the increase in distance from the center of the Earth. Derive an expression for the acceleration due to gravity at a distance h above the surface of the Earth, gh. Express the equation in terms of the radius R of the Earth, g, and h. &h= Suppose a 74.35 kg hiker has ascended to a height of 1893 m above sea level in the process of climbing Mt. Washington. By what percent has the hiker's weight changed from its value at sea level as a result of climbing to this elevation? Use g = 9.807 m/s² and R = 6.371 × 106 m. Enter your answer as a positive value. weight change = %Suppose you walk 87 m to the north, stop and turn to your right through an angle of 42.1°, and then walk in that direction another 76.2 m. Find the direction of the vector extending from your starting to your ending location. Express your answer as an angle relative to east. 0 N of E Report your numerical answer below, assuming three significant figures, D7. YA 60° A = 10.0 30° B 30° 53° D 20.0 37° C = 12.0 10 F = 20.0 B = 5.0