university-southern-california-department-environmental-sciences

University of Southern California Department of Biological Sciences

United States

http://dornsife.usc.edu/bisc/

academic organization
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Contributions
WhoRolePublications
David A. Caron Author 1 article
  1. Effects of changing pCO2 and phosphate availability on domoic acid production and physiology of the marine harmful bloom diatom Pseudo-nitzschia multiseries
Yuanyuan Feng Author 1 article
  1. Effects of changing pCO2 and phosphate availability on domoic acid production and physiology of the marine harmful bloom diatom Pseudo-nitzschia multiseries
Fei-Xue Fu Author 3 articles
  1. Effects of changing pCO2 and phosphate availability on domoic acid production and physiology of the marine harmful bloom diatom Pseudo-nitzschia multiseries
  2. Global change and the future of harmful algal blooms in the ocean
  3. High CO2 and Silicate Limitation Synergistically Increase the Toxicity of Pseudo-nitzschia fraudulenta
S. L. Ho Author 1 article
  1. Satellites measure recent rates of groundwater depletion in California's Central Valley
David A. Hutchins Author 3 articles
  1. Effects of changing pCO2 and phosphate availability on domoic acid production and physiology of the marine harmful bloom diatom Pseudo-nitzschia multiseries
  2. Global change and the future of harmful algal blooms in the ocean
  3. High CO2 and Silicate Limitation Synergistically Increase the Toxicity of Pseudo-nitzschia fraudulenta
Erica L. Seubert Author 1 article
  1. Effects of changing pCO2 and phosphate availability on domoic acid production and physiology of the marine harmful bloom diatom Pseudo-nitzschia multiseries
Jun Sun Author 1 article
  1. Effects of changing pCO2 and phosphate availability on domoic acid production and physiology of the marine harmful bloom diatom Pseudo-nitzschia multiseries
Avery O. Tatters Author 2 articles
  1. Global change and the future of harmful algal blooms in the ocean
  2. High CO2 and Silicate Limitation Synergistically Increase the Toxicity of Pseudo-nitzschia fraudulenta
Fei-Xue Fu Point of Contact 2 articles
  1. Effects of changing pCO2 and phosphate availability on domoic acid production and physiology of the marine harmful bloom diatom Pseudo-nitzschia multiseries
  2. Global change and the future of harmful algal blooms in the ocean
David A. Hutchins Point of Contact 1 article
  1. High CO2 and Silicate Limitation Synergistically Increase the Toxicity of Pseudo-nitzschia fraudulenta
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