11. As seen by the red curve in Figure 7, in late May 2017 the discharge was slightly more than 1200 cfs x 1000 (1,200,000 ft./sec). According to curves on the graph, the river discharge in late May 2017 was about % of the average flow (middle, dotted blue line) for that time of the year. By late July 2017, the river discharge returned to near the long-term average flow. The comparisons demonstrate the considerable variability in river discharge over time. a. 80 b. 170 c. 220 12. As a general rule of thumb, "the greater the flow, the greater the hypoxia." The 2017 late spring and early summer Mississippi River discharge and the subsequent Gulf of Mexico 2017 maximum dead zone data with the statement. a. are consistent b. are not consistent

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
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Thanks!!!!!
/COS08.pdf
10/12
9
F5
1000
80%
3400
1300
3000
000
600
400
200
a. 80
b. 170
c. 220
0
Current Ocean Studies B
F6
4
W
Jan Peb Har Apr Kay Jun
YARDERY 2017 FLOR
TARDERY 2015 FLOW
TARBARY 1330-2015 MAN FLOW
TARBERY -LE AVE FLOW
a. are consistent
b. are not consistent
HE ALVAR DERGRARON HYDROGRAPHE
MacBook Air
57
M
Jul
2017
www
-
+
Aug
Figure 7. Mississippi River discharge (red curve) at Tarbert Landing, MS from 1 Jan to 4
DEC 2017. [LSU/LUMCON]
11. As seen by the red curve in Figure 7, in late May 2017 the discharge was slightly more than
1200 cfs x 1000 (1,200,000 ft. /sec). According to curves on the graph, the river discharge in
late May 2017 was about % of the average flow (middle, dotted blue line) for that
time of the year. By late July 2017, the river discharge returned to near the long-term average
flow. The comparisons demonstrate the considerable variability in river discharge over time.
DII
59
Sep
OF S
12. As a general rule of thumb, "the greater the flow, the greater the hypoxia." The 2017 late
spring and early summer Mississippi River discharge and the subsequent Gulf of Mexico
2017 maximum dead zone data
with the statement.
COS #-10-SP22
YARBARY 1***-*WIN FLOW
Hov Ded
▷▷
CO
J
F10
F11
Transcribed Image Text:/COS08.pdf 10/12 9 F5 1000 80% 3400 1300 3000 000 600 400 200 a. 80 b. 170 c. 220 0 Current Ocean Studies B F6 4 W Jan Peb Har Apr Kay Jun YARDERY 2017 FLOR TARDERY 2015 FLOW TARBARY 1330-2015 MAN FLOW TARBERY -LE AVE FLOW a. are consistent b. are not consistent HE ALVAR DERGRARON HYDROGRAPHE MacBook Air 57 M Jul 2017 www - + Aug Figure 7. Mississippi River discharge (red curve) at Tarbert Landing, MS from 1 Jan to 4 DEC 2017. [LSU/LUMCON] 11. As seen by the red curve in Figure 7, in late May 2017 the discharge was slightly more than 1200 cfs x 1000 (1,200,000 ft. /sec). According to curves on the graph, the river discharge in late May 2017 was about % of the average flow (middle, dotted blue line) for that time of the year. By late July 2017, the river discharge returned to near the long-term average flow. The comparisons demonstrate the considerable variability in river discharge over time. DII 59 Sep OF S 12. As a general rule of thumb, "the greater the flow, the greater the hypoxia." The 2017 late spring and early summer Mississippi River discharge and the subsequent Gulf of Mexico 2017 maximum dead zone data with the statement. COS #-10-SP22 YARBARY 1***-*WIN FLOW Hov Ded ▷▷ CO J F10 F11
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