Eleven sets of illustrations and the corresponding free-body diagrams of building-related beams were provided in Chapter 4 as Exercises 4.1 through 4.11. These free-body diagrams constitute exercises that will be used here and again in Chapter 12. Follow these instructions carefully to save time later: (a) On each sheet of engineering paper reserved for analysis, calculate the vertical shear specific to that member at appropriate intervals across the length of the free-body diagram. Be sure to solve for locations where shear passes through zero. (b) On cach sheet of engineering paper containing the free-body diagram, acatly draw the related shear diagram directly below the associated free-body diagram. The shear diagram should be located in the middle one-third of the page. Reserve the bottom one-third of the sheet for the bending moment diagram introduced in Chap- ter 12. Be sure to show locations where shear passes through zero. 11.1 The free-body diagram in Exercise 4.1I. 11.2 The free-body diagram in Exercise 4.2. 11.3 The free-body diagram in Exercise 4.3. 11.4 The free-body diagram in Exercise 4.4. 11.5 The free-body diagram in Exercise 4.5. 11.6 The free-body diagram in Exercise 4.6. 11.7 The free-body diagram in Exercise 4.7. 11.8 The free-body diagram in Exercise 4.8. 11.9 The free-body diagram in Exercise 4.9. 11.10 The free-body diagram in Exercise 4.10. 11.11 The free-body diagram in Exercise 4.1I.

Architectural Drafting and Design (MindTap Course List)
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Author:Alan Jefferis, David A. Madsen, David P. Madsen
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Chapter8: Construction Specifications
Section: Chapter Questions
Problem 8.13P
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ENGR 263
A A A
EXERCISES
Eleven sets of illustrations and the corresponding free-body diagrams of building-related
beams were provided in Chapter 4 as Exercises 4. I through 4.11. These free-body diagrams
constitute exercises that will be used here and again in Chapter 12. Follow these instructions
carefully to save time later:
(a) On each sheet of engineering paper reserved for analysis, calculate the vertical shear
specific to that member at appropriate intervals across the length of the free-body
diagram. Be sure to solve for locations where shear passes through zero.
(b) On cach sheet of engineering paper containing the tree-body diagram, neatly draw
the related shear diagram directly below the associated free-body diagram. The
shear diagram should be located in the middle one-third of the page. Reserve the
bottom one-third of the sheet for the bending moment diagram introduced in Chap-
ter 12. Be sure to show locations where shear passes through zero.
11.1 The free-body diagram in Exercise 4.1.
11.2 The free-body diagram in Exercise 4.2.
11.3 The free-body diagram in Exercise 4.3.
11.4 The free-body diagram in Exercise 4.4.
11.5 The free-body diagram in Exercise 4.5.
11.6 The free-body diagram in Exercise 4.6.
11.7 The free-body diagram in Exercise 4.7.
11.8 The free-body diagram in Exercise 4.8.
11.9 The free-body diagram in Exercise 4.9.
11.10 The free-body diagram in Exercise 4.10.
11.11 The free-body diagram in Exercise 4.11.
Transcribed Image Text:130% v - + 7 Annotate T| Edit Trial expired Unlock Full Version ENGR 263 A A A EXERCISES Eleven sets of illustrations and the corresponding free-body diagrams of building-related beams were provided in Chapter 4 as Exercises 4. I through 4.11. These free-body diagrams constitute exercises that will be used here and again in Chapter 12. Follow these instructions carefully to save time later: (a) On each sheet of engineering paper reserved for analysis, calculate the vertical shear specific to that member at appropriate intervals across the length of the free-body diagram. Be sure to solve for locations where shear passes through zero. (b) On cach sheet of engineering paper containing the tree-body diagram, neatly draw the related shear diagram directly below the associated free-body diagram. The shear diagram should be located in the middle one-third of the page. Reserve the bottom one-third of the sheet for the bending moment diagram introduced in Chap- ter 12. Be sure to show locations where shear passes through zero. 11.1 The free-body diagram in Exercise 4.1. 11.2 The free-body diagram in Exercise 4.2. 11.3 The free-body diagram in Exercise 4.3. 11.4 The free-body diagram in Exercise 4.4. 11.5 The free-body diagram in Exercise 4.5. 11.6 The free-body diagram in Exercise 4.6. 11.7 The free-body diagram in Exercise 4.7. 11.8 The free-body diagram in Exercise 4.8. 11.9 The free-body diagram in Exercise 4.9. 11.10 The free-body diagram in Exercise 4.10. 11.11 The free-body diagram in Exercise 4.11.
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ENGR 263
A A A
Barna P S
(negligible weight)
A
Stetei izans
(loads) --
w = b/fe
2000 b
Fieen
6 Ft
1O FE
4 Fe
20 Ft
B
R.
SERei beam
Free-body diagram
Bearing Panes
(at column and in wall)
Loading condition
Transcribed Image Text:130% v - + 7 Annotate T| Edit Trial expired Unlock Full Version ENGR 263 A A A Barna P S (negligible weight) A Stetei izans (loads) -- w = b/fe 2000 b Fieen 6 Ft 1O FE 4 Fe 20 Ft B R. SERei beam Free-body diagram Bearing Panes (at column and in wall) Loading condition
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