most citedThe Revolution in Astronomy Education: Data Science for the Masses

19 citations · 54 across the 5 of their papers we have counts for

collaborators

5 papers

astro-ph.IM200911 cited

Scientific Data Mining in Astronomy

Kirk Borne

We describe the application of data mining algorithms to research problems in astronomy. We posit that data mining has always been fundamental to astronomical research, since data…

astro-ph.IM200919 cited

The Revolution in Astronomy Education: Data Science for the Masses

Kirk D. Borne, Suzanne Jacoby, K. Carney +5

As our capacity to study ever-expanding domains of our science has increased (including the time domain, non-electromagnetic phenomena, magnetized plasmas, and numerous sky surveys…

astro-ph.IM200917 cited

Astroinformatics: A 21st Century Approach to Astronomy

Kirk D. Borne

Data volumes from multiple sky surveys have grown from gigabytes into terabytes during the past decade, and will grow from terabytes into tens (or hundreds) of petabytes in the nex…

astro-ph.IM2009

Educating the Next Generation of Leading Scientists: Turning Ideas into Action

Michael Wood-Vasey, Regina Schulte-Ladbeck, William Blair +12

The core of scientific research is turning new ideas into reality. From the school science fair to the search for the secrets of dark energy, high-quality research consists of scie…

astro-ph20087 cited

Parametrization and Classification of 20 Billion LSST Objects: Lessons from SDSS

Z. Ivezic, T. Axelrod, A. C. Becker

The Large Synoptic Survey Telescope (LSST) will be a large, wide-field ground-based system designed to obtain, starting in 2015, multiple images of the sky that is visible from Cer…