TY - JOUR
T1 - Advancing Hydroinformatics and Water Data Science Instruction
T2 - Community Perspectives and Online Learning Resources
AU - Jones, Amber Spackman
AU - Horsburgh, Jeffery S.
AU - Bastidas Pacheco, Camilo J.
AU - Flint, Courtney G.
AU - Lane, Belize A.
N1 - Funding Information:
This research was primarily funded by the United States National Science Foundation Under Grant Number 1931297. Additional support for the educational/training modules was provided by the FAIR Cyber Training Fellowship program at Purdue University corresponding to National Science Foundation Grant Number 1829764. HydroLearn is supported by National Science Foundation Grant Number 1726965. Additional funding support was provided by the Utah Water Research Laboratory at Utah State University.
Publisher Copyright:
Copyright © 2022 Jones, Horsburgh, Bastidas Pacheco, Flint and Lane.
PY - 2022/6/29
Y1 - 2022/6/29
N2 - Hydroinformatics and water data science topics are increasingly common in university graduate settings through dedicated courses and programs as well as incorporation into traditional water science courses. The technical tools and techniques emphasized by hydroinformatics and water data science involve distinctive instructional styles, which may be facilitated by online formats and materials. In the broader hydrologic sciences, there has been a simultaneous push for instructors to develop, share, and reuse content and instructional modules, particularly as the COVID-19 pandemic necessitated a wide scale pivot to online instruction. The experiences of hydroinformatics and water data science instructors in the effectiveness of content formats, instructional tools and techniques, and key topics can inform educational practice not only for those subjects, but for water science generally. This paper reports the results of surveys and interviews with hydroinformatics and water data science instructors. We address the effectiveness of instructional tools, impacts of the pandemic on education, important hydroinformatics topics, and challenges and gaps in hydroinformatics education. Guided by lessons learned from the surveys and interviews and a review of existing online learning platforms, we developed four educational modules designed to address shared topics of interest and to demonstrate the effectiveness of available tools to help overcome identified challenges. The modules are community resources that can be incorporated into courses and modified to address specific class and institutional needs or different geographic locations. Our experience with module implementation can inform development of online educational resources, which will advance and enhance instruction for hydroinformatics and broader hydrologic sciences for which students increasingly need informatics experience and technical skills.
AB - Hydroinformatics and water data science topics are increasingly common in university graduate settings through dedicated courses and programs as well as incorporation into traditional water science courses. The technical tools and techniques emphasized by hydroinformatics and water data science involve distinctive instructional styles, which may be facilitated by online formats and materials. In the broader hydrologic sciences, there has been a simultaneous push for instructors to develop, share, and reuse content and instructional modules, particularly as the COVID-19 pandemic necessitated a wide scale pivot to online instruction. The experiences of hydroinformatics and water data science instructors in the effectiveness of content formats, instructional tools and techniques, and key topics can inform educational practice not only for those subjects, but for water science generally. This paper reports the results of surveys and interviews with hydroinformatics and water data science instructors. We address the effectiveness of instructional tools, impacts of the pandemic on education, important hydroinformatics topics, and challenges and gaps in hydroinformatics education. Guided by lessons learned from the surveys and interviews and a review of existing online learning platforms, we developed four educational modules designed to address shared topics of interest and to demonstrate the effectiveness of available tools to help overcome identified challenges. The modules are community resources that can be incorporated into courses and modified to address specific class and institutional needs or different geographic locations. Our experience with module implementation can inform development of online educational resources, which will advance and enhance instruction for hydroinformatics and broader hydrologic sciences for which students increasingly need informatics experience and technical skills.
KW - collaborative instruction
KW - community resources
KW - educational module
KW - graduate education
KW - hydroinformatics
KW - online education
KW - water data science
UR - https://www.scopus.com/pages/publications/85134149208
UR - https://www.mendeley.com/catalogue/03d9e2a3-b56b-3dd5-b643-4c3b41fcd906/
U2 - 10.3389/frwa.2022.901393
DO - 10.3389/frwa.2022.901393
M3 - Article
AN - SCOPUS:85134149208
SN - 2624-9375
VL - 4
JO - Frontiers in Water
JF - Frontiers in Water
M1 - 901393
ER -