Solve this question using geometry and drawing Determine the forces P and Q when the 125 N force is the resultant force of these forces 12 5 125 N P
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- Problem 3. What is the moment of the 1.4 kN force along the direction of the 1.0 kN force? Express your answer as a magnitude and sketch the direction of rotation about the axis defined by the 1.0 kN force TIGBAO TK 1.0KN X 539 indi 21 150 mm 195 mm 2 4 160 mm 21% ARD 19TO 1.4 kN MEBIRT 0 DAW ITOM 00 1400The Resultant of forces is sngle force at point (8) . the haviZontal Component of the force (P) equol (lo0) to the kight. 60 12 130 12 B find the Resuitant and the forceThree force are a s teel Plaste a c ting on with 4m Leng th by um width Shown in figure The se three forces are required to caure a hovizontal re sultanta cting through Point if F= yOS N 1. The Ualue of hori outal resaltant Ris 2 The value of force Pis Q3: The value of force Ti
- A tower has a wire (AB) attached to the tower at point B and it is anchored to a bolt at A. The tension in the wire is 993 N. Call the Force in AB FAB Calculate the x, y and z components of FAB What is the direction of FAB in terms of alpha ⍺, beta β and gamma ? ? What is the x component of FAB ? Round your answer to the nearest whole number. What is the y component of FAB ? Round your answer to the nearest whole number. What is the z component of FAB ? Round your answer to the nearest whole number. What is alpha ⍺ for FAB ? Enter answer rounded to one decimal place. What is beta β for FAB ? Enter answer rounded to one decimal place. What is gamma ? for FAB ? Enter answer rounded to one decimal place.It is required that the resultant force acting on the eyebolt in Fig. 2-14a be directed along the positive x axis and that F, have a minimum magnitude. Determine this magnitude, the angle 0,and the corresponding resultant force. F= 0N F= s00 N F= N00 N FR 90 (c) (a)Verify if my answers are correct:R=6kNd=1.875 mHence the resultant force will act at 1.875m away from point A.
- 20 F- 10 N 250 mm The 10-N force is applied to the handle of the hy- draulic control valve as shown. Calculate the mo- | 60/ 37.5 mm ment of this force about point O. find out th recultent omont of tuo forooc choun in FigDetermine the magnitude of the resultant force (in N) of the coplanar force system shown in the figure below where the horizontal force P = 222 N and the couple M = 610 Nm. M N m A 150 N 300 mm -250 mm- P N 400 mm 90 N Answer: Determine the angle (in degrees) that the resultant makes with the positive x-axis, which is in the same direction as the horizontal force P. Answer: If the resultant force calculated in Q8 is placed at A, determine the magnitude of the couple created in Nm. Answer: Determine the distance from A (in m) at which this resultant should be placed so that the system is replaced entirely by a single force. Answer: If the resultant force calculated in Q8 is placed at O, determine the magnitude of the couple created in Nm. AnSwer. Determine the distance from O (in m) at which this resultant should be placed so that the system is replaced entirely by a single force. Answer:What is the y component of a force with magnitude of 5kn applied 120 degrees with respect to the positive horizontl axis?
- 9Determine the magnitude of the resulfant force the coplanar force system Shown In of the fiqure horrzon tal force below wheve the P =182 NN and the , e Couple M= 600 Nm M N.m 150 N బాం గగజ 300 mm -250M 9o N 400 mm b Determine the angle Cin degrees) that the resuttant makes with the positive x axis, whic is the same in direction the horizotal force P as c) If the resultant force calcula ted in a)is placed at A, determine the magnitude of the couple Creearted in Nm. di petermine the drstance from AC in meters) at which this resultant should be placed so that the system is replaced ent en tirey by single force.Example (2-13): The plate is subjected to the two forces at (A) and (B) as shown. Determine the magnitude of the resultant of these two forces and its direction FA= 8kN measured clockwise from the horizontal. Solution : Parallelogram Law : The parallelogram law of addition is shown in Fig. a. Trigonometry: Using law of cosines (Fig. b), we have: B F8 6 kNFind the internal force systems acting on sections 1 and 2.