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Overview
Transcript
Subjective Data Collection
Objective Data Collection
Documentation
Correct
Partially correct
Incorrect
Missed
Inspected chest
1 of 1 point
Symmetry
(1/2 point)
Symmetric
Asymmetric
Appearance
(1/2 point)
No visible abnormal findings
Rash or lesion
AP diameter abnormal
Intercostal retraction while breathing
Excessive use of accessory muscles while breathing
Pectus excavatum
Evidence of trauma (scar, laceration, or bruising)
Palpated chest expansion
1 of 1 point
Symmetry
(1/1 point)
Equal bilaterally
Unequal bilaterally
Palpated tactile fremitus
1 of 1 point
Symmetry
(1/2 point)
Equal bilaterally
Unequal bilaterally
Vibration
(1/2 point)
Expected fremitus
Decreased fremitus
Absent fremitus
Percussed chest wall
1 of 1 point
Observations
(1/2 point)
All areas resonant
Some areas of dullness
Location
(1/2 point)
No areas of dullness
Dullness, anterior right upper lobe
Dullness, anterior right middle lobe
Dullness, anterior right lower lobe
Dullness, anterior left upper lobe
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Dullness, anterior left lower lobe
Dullness, posterior right upper lobe
Dullness, posterior right lower lobe
Dullness, posterior left upper lobe
Dullness, posterior left lower lobe
Auscultated breath sounds
1 of 1 point
Breath Sounds
(1/3 point)
Present in all areas
Diminished in some areas
Absent in some areas
Adventitious Sounds
(1/3 point)
No adventitious sounds
Wheezing
Fine crackles
Stridor
Rhonchi
Rales
Location
(1/3 point)
All areas clear
Adventitious sounds in anterior right upper lobe
Adventitious sounds in anterior right middle lobe
Adventitious sounds in anterior right lower lobe
Adventitious sounds in anterior left upper lobe
Adventitious sounds in anterior left lower lobe
Adventitious sounds in posterior right upper lobe
Adventitious sounds in posterior right lower lobe
Adventitious sounds in posterior left upper lobe
Adventitious sounds in posterior left lower lobe
Auscultated for bronchophony
1 of 1 point
Bronchophony
(1/1 point)
Positive
Negative
Comments
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Review | Constants
pour unistur very unu sıyın
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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
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✓ 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.
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Year
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gestion 9
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First Semester, First year. Academic year 2020-2021
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as shown in
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As shown in the figure, air with a volumetric flow rate of 17,000 ft/min enters an air-handling unit at 80°F, 1 atm. The air-handling
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Refrigerant 134a enters a well-insulated nozzle at 200 Ibf/in.?, 140°F, with a velocity of 120 ft/s and exits at 50 Ibf/in.? with a velocity
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د ميکانيك شهري 2021.pdf
UNIVERSITY OF BASRAH - COLLEGE OF ENGINEERING
DEPARTMENT OF CIVIL ENGINEERING
Subject: Engineering Mechanics-Static
Class: 1st year, 1st term
Exam. : Semester
Date: 16/3/2021
Examiner: Dr. Mazin, Dr. Aqeel, Dr.Ahid and Dr.Jaffar
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Q1] (10 Marks)
A- In Fig.A , If the resultant force acting on the bracket is to be 642 N directed
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C- In Fig.C , Resolve the 100N force into components along the u and v axes, and
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D- In Fig.D, Determine the moment of the force about point O.
300 N
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25°
32
45°
60°
505 N
50°
40N
Fig. A
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Fig. B
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28°
18
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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…arrow_forwardest 2 (copy) (page 4 of 9) A wiseup.wsu.acza/mod/quiz/attempt.php7attempt=610918cmid 148960&page=3 ops O YouTube M Gmail Maps O GENERAL MATHEM. O New Tab :WSU WiSeUp 1 MONLO GOA ashboard / My courses / FLM15B2_KF_WS6222 2021 / Tests / Test 2 (copy) uestion 4 Quz navigation Gate AB in Figure below is 1.0 m long and 0.9 wide. Calculate force F on the gate and position X of its centre of Not yet answered pressure. Marked out of Finish attempt 10,000 Rag question 3m Oil, s.g.=Q81 7m 1.0m B 50 Answerarrow_forwardProjects A and B are mutually exclusive. The minimum attractive rate of return (MARR) is 12%. Using rate of return analysis, which project should be selected? If the image fails to load here, go to https://www.dropbox.com/s/ld6wctqieu8jgwp/ROR.jpg Year 0 1 2 3 4 ROR A - $750 $200 $200 $200 $600 17.68% B - $1,150 $300 $350 $400 $700 16.44% O Project A O Project B O Both Project A and B O Select none of the project. O Insufficient information to make a decision. B-A - $400 $100 $150 $200 $100 13.69%arrow_forward
- this is a practice problem, not a graded assignmentarrow_forwardCan anyone help me with these questions pleasearrow_forwardethuto.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 correctarrow_forward
- Courses WP NWP Ass X WP NWP Ass X b Answered x b Answerec x× b Engineeri x b Answerec x b Answerec x b Answerec x b Answerec x X Mathway X + A education.wiley.com/was/ui/v2/assessment-player/index.html?launchld=3bd9f9b2-6dae-43e7-a150-c87c490093e0#/question/4 E M1A4-ATTEMPT 1 Question 5 of 6 > -/ 1 View Policies Current Attempt in Progress Water is ejected from the water nozzle with a speed vo = 47.4 ft/sec. For what value of the angle e will the water land closest to the wall after clearing the top? Neglect the effects of wall thickness and air resistance. What distance x to the right of point B does the water land? 5.7' 3.0' B 63' Not to scale Answer: e = i X = i ft -Tautheal and Nadia Eng-Mgt-Midter.docx Eng-Mgt-Prelims.docx Show all 9:46 PM O Type here to search 日 27°C Clear 1/24/2022 .. > IIIarrow_forwardDessert - sealed Date: Time: Made: 28/11/21 18:22 Ready: 28/11/21 20:22 Discard:03/12/21 18:22 Fri OLOGY BLANCHARDSTOWN - Google Chrome pluginfile.php/394133/mod_resource/content/1/PME1%20Sample%20Class%20Test%20Dec%202021.pdf FTECHNOLOGY BLANCHARDSTOWN 2/9 | 250% + | E O a) Calculate the principal stresses, given that the state of plane stress for an element is: Oy = 65MPA, Oy =-55MPA, Txy =-30MPa TXY Yarrow_forwardCan anyone help me with these questions pleasearrow_forward
- 11°C Mostly cloudy ליזום Queen's Online x MEE1018 2221ES2 1.1 X Past paper examples ex Cengal Appendix1 Slu x b Security | bartleby https://qubstudentcloud.sharepoint.com/sites/exampastpapers/Papers/MEE/MEE1018/MEE1018 2221ES2_1_198.pdf @ ✩ Draw n F2 £ 1 2 3 Ꮕ W a Ask Copilot 2 of 15 (b) During a process, 2 kg of methane (CH) is heated from 800 K to 1200 K at constant volume. Mcarbon 12 kg/kmol, Maydrogen = 1 kg/kmol and Cp(Methane) 2.2537 kJ/kg.K (i) Determine the specific gas constant for methane. (ii) Calculate the change in entropy during the process. (iii) Determine the work done. = [6 marks] (c) An air conditioning unit with COP = 8 removes heat from a room to the atmosphere at a rate of 2 kW. Assuming electrical and mechanical efficiencies are 100%, determine the rate of heat transfer to the atmosphere and the required power input. [3 marks] (d) 4 kg of a gas undergoes the cycle in Figure Q1(d). Describe each process in the cycle and calculate the net work. E P (kPa) <» 120 DII…arrow_forwardmoodle.nct.edu.om/mod/quiz/attempt.php?attempt=4982318&cmid%3D54989 D YouTube O Maps G nc - u Google A dwlj JI Jauaill B whilSw * Ailailly äujill öjljg 国Rea Te-Learning Portal Courses - Reports - e-Services - Academic Departments ETC - CIMS - UNitorm fiOW Mohammed Abdullah Moha O Non-uniform flow The centre of the pressure of a plane surface is immersed in a liquid equal to the force due to gravity and acts upward. Select one: O True O False with decrease in density of liquid. In a stationary fluid, The pressure head at same depth inside the fluid equal O increases as well as decreases 11:35 D increacos searcharrow_forward5 Ċ Safari File Edit View History Bookmarks Window Help ... 3.... ock CENGAGE MINDTAP 1 Chapter 5: Review Questions Assignment: Chapter 5: Review Questions (Practice) 18. control 19. Questions Gravity Review Question 31 17. 20. 21. 22 23. 24. esc 25. 28. 29. V 30. 31. 32. 33. ● O Pra.... 26 27. Not Answered ● ● ● ● ● O O ● O ● ! 1 Icon Key 300⁰ Q 2. A 1 N If a planet were to slowly migrate inward toward the Sun while remaining in a stable orbit, would its orbital speed increase, decrease, or stay the same? Would its angular momentum change? O a. As the planet migrates toward the Sun, its orbital speed would increase and its angular momentum would decrease. b. As the planet migrates toward the Sun, its orbital speed would stay the same and its angular momentum would decrease. OC. As the planet migrates toward the Sun, its orbital speed would increase and its angular momentum would stay the same. Od. As the planet migrates toward the Sun, its orbital speed and angular momentum would stay…arrow_forward
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