1 - A bronze rod 3 m long with a cross sectional area of 320 mm? is placed between two rigid walls as shown in Figure. At a temperature of -20°C, the gap A = 1.5 mm. Find the temperature at which the compressive stress in the bar will be 35 MPa. Use L = 3, a = 18.0 × 10° m/(m-°C), and E = 80 GPa. (10 Points)
1 - A bronze rod 3 m long with a cross sectional area of 320 mm? is placed between two rigid walls as shown in Figure. At a temperature of -20°C, the gap A = 1.5 mm. Find the temperature at which the compressive stress in the bar will be 35 MPa. Use L = 3, a = 18.0 × 10° m/(m-°C), and E = 80 GPa. (10 Points)
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![1 - A bronze rod 3 m long with a cross sectional area of 320 mm? is placed
between two rigid walls as shown in Figure. At a temperature of -20°C, the gap
A = 1.5 mm. Find the temperature at which the compressive stress in the bar
will be 35 MPa. Use L= 3, a = 18.0 × 106 m/(m-°C), and E = 80 GPa. (10 Points)
A](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F28d507ad-c899-4cb2-ad4e-1fd7a2ef0880%2F8468972a-db2e-4c2c-851c-39b756af146d%2Fgrsvqvc_processed.png&w=3840&q=75)
Transcribed Image Text:1 - A bronze rod 3 m long with a cross sectional area of 320 mm? is placed
between two rigid walls as shown in Figure. At a temperature of -20°C, the gap
A = 1.5 mm. Find the temperature at which the compressive stress in the bar
will be 35 MPa. Use L= 3, a = 18.0 × 106 m/(m-°C), and E = 80 GPa. (10 Points)
A
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