2. A stream near a marine lab has an oxygen isotope composition of 80= -20 %o vs. SMOW. Surface ocean water in the bay into which this stream empties has a 80 value of -12 %o vs. SMOW, compared to the open ocean which has a salinity of 35 parts per thousand and 80 =0.0 %o. Predict the salinity of Marine Lab surface seawater and its proportions of fresh water and ocean water, based on its oxygen isotopic composition. %3D
2. A stream near a marine lab has an oxygen isotope composition of 80= -20 %o vs. SMOW. Surface ocean water in the bay into which this stream empties has a 80 value of -12 %o vs. SMOW, compared to the open ocean which has a salinity of 35 parts per thousand and 80 =0.0 %o. Predict the salinity of Marine Lab surface seawater and its proportions of fresh water and ocean water, based on its oxygen isotopic composition. %3D
Applications and Investigations in Earth Science (9th Edition)
9th Edition
ISBN:9780134746241
Author:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Publisher:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Chapter1: The Study Of Minerals
Section: Chapter Questions
Problem 1LR
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H1.

Transcribed Image Text:2. A stream near a marine lab has an oxygen isotope composition of 80 = -20 %o vs.
SMOW. Surface ocean water in the bay into which this stream empties has a 80
value of -12 %o vs. SMOW, compared to the open ocean which has a salinity of 35
parts per thousand and 80 =0.0 %o. Predict the salinity of Marine Lab surface
seawater and its proportions of fresh water and ocean water, based on its oxygen
isotopic composition.
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