A fluorescent tracer with a concentration of 40 gm/litre was injected into a stream at a constant rate of 6 cm³/second. At a downstream section sufficiently for away from the point of injection, the concentration was found to be 0.005 parts per million (ppm) discharge in the stream neglecting the initial concentration of tracer will be-
A fluorescent tracer with a concentration of 40 gm/litre was injected into a stream at a constant rate of 6 cm³/second. At a downstream section sufficiently for away from the point of injection, the concentration was found to be 0.005 parts per million (ppm) discharge in the stream neglecting the initial concentration of tracer will be-
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A fluorescent tracer with a concentration of 40
gm/litre was injected into a stream at a constant
rate of 6 cm³/second. At a downstream section
sufficiently for away from the point of injection,
the concentration was found to be 0.005 parts
per million (ppm) discharge in the stream
neglecting the initial concentration of tracer will
be-](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F07c23946-ca5d-4bfd-8658-d5674296afc8%2F30bad3c9-fbfc-4ea1-addc-6ef54c091ca1%2Fe7dxo8a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A fluorescent tracer with a concentration of 40
gm/litre was injected into a stream at a constant
rate of 6 cm³/second. At a downstream section
sufficiently for away from the point of injection,
the concentration was found to be 0.005 parts
per million (ppm) discharge in the stream
neglecting the initial concentration of tracer will
be-
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