The rigid beam ABC is supported by pin A and wires BD and CE. If the load P on the beam causes the end C to be displaced 6 mm downward. What is the normal strain developed in * ?wire BD
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- docs.google.com/forms/d/e/1FAlpQLSfi RR3DKLPjE92N21hdRkiDR6Y_GIOK1JXIgaAQIPT1n-w/forml Using an appropriate substitution, S tan (x)sec1(x)dx is equal to: sec11x +C 11 sec13x sec11x sec°x + C 13 11 This option This option tan°x tan11x + C tan11x tan13x + C 6. 11 13 11 This option This optionChrome File Edit View History Bookmarks People Tab Window Help McGraw-Hill Campus - ALEKS Science - CHM1045 GEN CHEM 1 BLENDED 669113 A bconline.broward.edu/d21/le/content/466883/fullscreen/12868783/View McGraw-Hill Campus - ALEKS Science O GASES Interconverting pressure and force A chemistry graduate student is designing a pressure vessel for an experiment. The vessel will contain gases at pressures up to 470.0 MPa. The student's design calls for an observation port on the side of the vessel (see diagram below). The bolts that hold the cover of this port onto the vessel can safely withstand a force of 2.80 MN. pressure vessel bolts side View port Calculate the maximum safe diameter w of the port. Round your answer to the nearest 0.1 cm. O cm Explanation Check O2021 McGraw-Hill Education. All Rights Reserved. Terms of Use FEBDOM 1500 N A327197870 X SA LPU Live C MCQ (Mult x Creative Steal X Battlefield haX 97870 133937_2022_G2CA3MEC107.pdf 6 News [OFFICIAL]Filmora. Hillm Clipmaker - Online... INTROANIME- Pan... Adventure Archives... Free Download PC.. |E Readin- %001 Q 回 ictioniesS. OSIV tension in the cables. DULL N 09 Q3: As shown in figure, find that at what distance body A will attain a velocity of 3 m/s 4. B. when starts from rest. N 000 3. Assume coefficient frietion as 0.2 for block and of surface and pulleys are frictionless and weightless. 2. 20:07 14-01-2022 NI
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- Course Home llege.com/course.html?courseld=17313546&OpenVellumHMAC=1c89e19b153e443490bb4df0da3b2ded#10001 to Review | Constants pour unistur very unu sıyın mm nyurve. Fv = 390 N Sur Previous Answers Mountaineers often use a rope to lower themselves down the face of a cliff (this is called rappelling). They do this with their body nearly horizontal and their feet pushing against the cliff (Eigure 1). Suppose that an 78.6-kg climber, who is 1.88 m tall and has a center of gravity 1.0 m from his feet, rappels down a vertical cliff with his body raised 40.4° above the horizontal. He holds the rope 1.54 m from his feet, and it makes a 20.7° angle with the cliff face. ✓ Correct Part D Figure 1 of 1 What minimum coefficient of static friction is needed to prevent the climber's feet from slipping on the cliff face if he has one foot at a time against the cliff? Express your answer using two significant figures. {—| ΑΣΦ ? fs= Submit Provide Feedback Next > P Pearson Copyright © 2022 Pearson…A VẬT LÝ ĐẠI CƯƠ X A TongHopTailieul x A DaoHam.pdf - Go X A Chương 1 - Good x The position vec My Tutoring | ba x QUIZ 1: MOTION X f (2) Facebook O X Slide 1 O YouTube (66) YouTube + → C D A Không bảo mật e-learning.hcmut.edu.vn/pluginfile.php?file=%2F1499051%2Fmod_resource%2Fcontent%2F8%2FChapter%201-%20Kinematics.pdf A YouTube to MP3 C. M Hộp thư đến (41) -... Khóa học: Soft Skill. O Audio Cambridge 1. A TẠI LIEU WRITING. t Link tải Cam 1- 15.. iot IELTS Simulation Te. A (HV] Chương trình... A BTC OISP GALA 202.. A GĐ2: OISP YOUTH... A Tổng hợp đề writin. A REPORT DE THI IEL. >> QUIZ 1: MOTION IN TWO AND THREE DIMENSIONS 1 / 5 195% in meters and t is in seconds. At t = 3.00 s, find (a) the position of the particle, (b) its velocity, and (c) its acceleration. 1.2. A motorist drives south at 20.0 m/s for 3.00 min, then turns west and travels at 25.0 m/s for 2.00 min, and finally travels northwest at 30.0 m/s for 1.00 min. For this 6.00-min trip, find (a) the total vector displacement,…ethuto.cut.ac.za/ultra/courses/_9063_1/cl/outline Question Completion Status: Moving to another question will save this response. gestion 9 MECHANICAL AND CIVIL ENGINEERING Two forces and 2 are acting on a particle. 20 N 45° 30° 16N The magnitude of the resultant force is: O4 287+6.147 O B. 12.37 N OC 28.67 N D. None of the above is correct