Q4/ A 50 m steel tape with a cross-sectional area of 13 mm and weight of 0.122 kg per meter. The tape is hanged under a tension force of 115 N at 40°c to measure a distance equal to 2560m. During the measurement, the tape was found to be 2 cm too long. This tape has been made under a tension force of 24.6 kg and 20°c. Calculate the correct distance knowing that a=0.000018 m/c, E = 2.11*10 kg/cm', g 9.81 m/s.
Q4/ A 50 m steel tape with a cross-sectional area of 13 mm and weight of 0.122 kg per meter. The tape is hanged under a tension force of 115 N at 40°c to measure a distance equal to 2560m. During the measurement, the tape was found to be 2 cm too long. This tape has been made under a tension force of 24.6 kg and 20°c. Calculate the correct distance knowing that a=0.000018 m/c, E = 2.11*10 kg/cm', g 9.81 m/s.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Q4/ A 50 m steel tape with a cross-sectional area of 13 mm and weight of 0.122 kg per
meter. The tape is hanged under a tension force of 115 N at 40°c to measure a distance equal
to 2560m. During the measurement, the tape was found to be 2 cm too long. This tape has
been made under a tension force of 24.6 kg and 20°c. Calculate the correct distance knowing
that a=0.000018 m/c, E = 2.11*10 kg/cm', g 9.81 m/s.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6ad3fb62-7cac-46dd-8d5a-91a745fd5931%2Fa399e8fe-e9c2-437e-88e4-5c94e894c6d0%2Fmffiy7_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q4/ A 50 m steel tape with a cross-sectional area of 13 mm and weight of 0.122 kg per
meter. The tape is hanged under a tension force of 115 N at 40°c to measure a distance equal
to 2560m. During the measurement, the tape was found to be 2 cm too long. This tape has
been made under a tension force of 24.6 kg and 20°c. Calculate the correct distance knowing
that a=0.000018 m/c, E = 2.11*10 kg/cm', g 9.81 m/s.
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