The standard length of a tape is 100m having a weight of 2.5kg with the standard temperature of 20°C and standard pull of 15kg. The young modulus of elasticity of the tape is 200GPa, cross sectional area is 6.05mm² and the coefficient of linear expansion is 0.0000116/°C. 3. Determine the normal tension of the tape in N. Note! The normal tension of a tape is the applied tension which will cause the effects of pull and sag to neutralize each other.
The standard length of a tape is 100m having a weight of 2.5kg with the standard temperature of 20°C and standard pull of 15kg. The young modulus of elasticity of the tape is 200GPa, cross sectional area is 6.05mm² and the coefficient of linear expansion is 0.0000116/°C. 3. Determine the normal tension of the tape in N. Note! The normal tension of a tape is the applied tension which will cause the effects of pull and sag to neutralize each other.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Problem 03
The standard length of a tape is 100m having a weight of 2.5kg with the standard temperature of 20°C
and standard pull of 15kg. The young modulus of elasticity of the tape is 200GPA, cross sectional area is
6.05mm? and the coefficient of linear expansion is 0.0000116/°C.
3. Determine the normal tension of the tape in N.
Note!
The normal tension of a tape is the applied tension which will cause the effects of pull and sag to neutralize
each other.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4c0981e3-e02a-4989-b9db-4b3bd3547570%2F3378a438-1154-4665-8a8d-b90bddd7a79b%2Fbl89idc_processed.png&w=3840&q=75)
Transcribed Image Text:Problem 03
The standard length of a tape is 100m having a weight of 2.5kg with the standard temperature of 20°C
and standard pull of 15kg. The young modulus of elasticity of the tape is 200GPA, cross sectional area is
6.05mm? and the coefficient of linear expansion is 0.0000116/°C.
3. Determine the normal tension of the tape in N.
Note!
The normal tension of a tape is the applied tension which will cause the effects of pull and sag to neutralize
each other.
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