Engineering
Engineering, 05.09.2020 21:01, tracyaleblanc

The member shown below is fixed at O and its dimensions are h1 = 1.10 m, h2 = 0.20 m, and w = 0.50 m. A force F of magnitude F=51 N is applied at point A. (Figure 2)What is the magnitude of the moment of the force about point O?


The member shown below is fixed at O and its dimensions are h1 = 1.10 m, h2 = 0.20 m, and w = 0.50

answer
Answers: 3

Other questions on the subject: Engineering

image
Engineering, 04.07.2019 18:10, soreese02
An ideal otto cycle with air as the working fluid has a compression ratio of 8. the minimum and maximum temperatures in the cycle are 300 k and 1340 k. use constant specific heats at room temperature to determine (a) the amount of heat transferred to the air during the heat- addition kj/kg, (b) the thermal efficiency, and (c) the thermal efficiency of a carnot cycle ope limits. process, in rating between the same temperature
Answers: 2
image
Engineering, 04.07.2019 18:10, 0436500
Aturning operation is performed with following conditions: rake angle of 12°, a feed of 0.35 mm/rev, and a depth of cut of 1.1 mm. the work piece is aluminum alloy 6061 with t6 heat treatment (a16061-t6). the resultant chip thickness was measured to be 1.0 mm. estimate the cutting force, fc. use shear stress of 207 mpa and coefficient of friction on the tool face of 0.6.
Answers: 1
image
Engineering, 04.07.2019 18:20, kodyclancy
Aquick transition of the operating speed of a shaft from its critical speed will whirl amplitude. (a) increase (b) limit (c) not affect (d) zero
Answers: 2
image
Engineering, 04.07.2019 19:20, rida10309
At steady state, air at 200 kpa, 325 k, and mass flow rate of 0.5 kg/s enters an insulated duct having differing inlet and exit cross-sectional areas. the inlet cross-sectional area is 6 cm2. at the duct exit, the pressure of the air is 100 kpa and the velocity is 250 m/s. neglecting potential energy effects and modeling air as an 1.008 kj/kg k, determine ideal gas with constant cp = (a) the velocity of the air at the inlet, in m/s. (b) the temperature of the air at the exit, in k. (c) the exit cross-sectional area, in cm2
Answers: 2
Do you know the correct answer?
The member shown below is fixed at O and its dimensions are h1 = 1.10 m, h2 = 0.20 m, and w = 0.50 m...

Questions in other subjects:

Konu
Mathematics, 15.12.2020 21:00
Konu
Mathematics, 15.12.2020 21:00
Konu
Mathematics, 15.12.2020 21:00