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3-D Mapping of Ocean Water Masses and Provinces

3-D Mapping of Ocean Water Masses and Provinces. Argo Profile Distribution. Province Distribution. Matthew Oliver (U. Del.) Matthew Grossi (U. Del) Erick Geiger (U. Del). Mapping Dynamic Ocean Biogeographic Provinces. Thursday 12:15pm. Andrew Irwin (Mt. Allison University)

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3-D Mapping of Ocean Water Masses and Provinces

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  1. 3-D Mapping of Ocean Water Masses and Provinces Argo Profile Distribution Province Distribution Matthew Oliver (U. Del.) Matthew Grossi (U. Del) Erick Geiger (U. Del)

  2. Mapping Dynamic Ocean Biogeographic Provinces Thursday 12:15pm Andrew Irwin (Mt. Allison University) Matthew Oliver (U. Del.) Oscar Schofield (Rutgers) Paul Falkowski (Rutgers)

  3. Typical Argo Profile

  4. Reflections on the European Pine Sawfly Holling, C.S. 1959. The components of predation as revealed by a study of small mammal predation of the European pine sawfly. Canad. Entomol. 91: 293-320.Holling, C.S. 1959. Some characteristics of simple types of predation and parasitism. Canad. Entomol. 91: 385-398. Prey switching curve

  5. Reflections on the European Pine Sawfly Holling, C.S. 1959. The components of predation as revealed by a study of small mammal predation of the European pine sawfly. Canad. Entomol. 91: 293-320.Holling, C.S. 1959. Some characteristics of simple types of predation and parasitism. Canad. Entomol. 91: 385-398. No. of Prey Killed by One Predator A=10 A/2 No. of Prey Killed by One Predator B=15 Prey Density

  6. Reflections on the European Pine Sawfly No. of Prey Killed by One Predator B=15 A/2 A=10 No. of Prey Killed by One Predator Prey Density

  7. Modified Holling III Curve All Models are wrong, some are useful – G. Box A=0.08 B=143 C=1027 D=0.005 E=15.7 E A=4.1 B=147 C=1022 D=0.005 E=11.3 D A=7.3 B=137 C=1021 D=0.004 E=1.04 C

  8. Argo Analysis ARGO DATA ASSESSMENT USING QUALITY CONTROL (QC) FLAGS No. of profiles Remaining Downloaded 500253 Missing variables 2000 498253 Failed QC 82962 415291 Profile <10 m 920 414371 Total analyzed: 414371

  9. A

  10. B

  11. C

  12. D

  13. E

  14. Future Work Work on minimizing the number of parameters to fit a curve Moving analysis beyond density and into temperature and salinity Moving analysis into coastal ocean Matching with Water Masses and Biomes

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