A paper tube is formed by rolling a cardboard strip in a spiral and then gluing the edges together as shown in (Figure 1). The paper is 1.9 mm thick and the tube has an outer diameter of 100 mm.

Structural Analysis
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Chapter2: Loads On Structures
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A paper tube is formed by rolling a cardboard strip in a spiral and then
gluing the edges together as shown in (Figure 1). The paper is 1.9 mm
thick and the tube has an outer diameter of 100 mm.
Figure
200 N
40°
100 mm
1 of 1
200 N
Determine the shear stress acting along the seam, which is at 50° from the horizontal, when the tube is subjected to an axial
compressive force of 200 N.
Express your answer to three significant figures and include appropriate units.
■μÅ
Ta'y' = 316.39
kPa
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Transcribed Image Text:A paper tube is formed by rolling a cardboard strip in a spiral and then gluing the edges together as shown in (Figure 1). The paper is 1.9 mm thick and the tube has an outer diameter of 100 mm. Figure 200 N 40° 100 mm 1 of 1 200 N Determine the shear stress acting along the seam, which is at 50° from the horizontal, when the tube is subjected to an axial compressive force of 200 N. Express your answer to three significant figures and include appropriate units. ■μÅ Ta'y' = 316.39 kPa Submit Previous Answers Request Answer Provide Feedback ? X Incorrect; Try Again; 9 attempts remaining
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