Data Set Tt 2222

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Abstract Considerable attention has been devoted to the use of persistent identifiers for assets of interest to scientific and other communities alike over the last two decades. Among persistent identifiers, Digital Object Identifiers (DOIs) stand out quite prominently, with approximately 133 million DOIs assigned to various objects as of February 2017. While the assignment of DOIs to objects such as scientific publications has been in place for many years, their assignment to Earth science data sets is more recent. Applying persistent identifiers to data sets enables improved tracking of their use and reuse, facilitates the crediting of data producers, and aids reproducibility through associating research with the exact data set(s) used. Maintaining provenance – i.e., tracing back lineage of significant scientific conclusions to the entities (data sets, algorithms, instruments, satellites, etc.) that lead to the conclusions, would be prohibitive without persistent identifiers. This paper provides a brief background on the use of persistent identifiers in general within the US, and DOIs more specifically.

Data Set Tt 2222

Hex rays plw download movies. We examine their recent use for Earth science data sets, and outline successes and some remaining challenges. Among the challenges, for example, is the ability to conveniently and consistently obtain data citation statistics using the DOIs assigned by organizations that manage data sets. Introduction Data curation and citation practices in the Earth sciences have emphasized assignment and citation of identifiers in order to promote asset discoverability and interoperability ( ). Persistent identifiers undoubtedly contribute to the popularity of data citation through enabling improved tracking of data set use and reuse, providing credit for data producers, and aiding reproducibility efforts through associating research with the exact data set(s) used (;; Katz and Strasser 2015). By directly linking publications with the resources underlying the scientific findings reported therein, persistent identifiers ensure scientific integrity, promote data discovery and management, and facilitate scientific communication ( ). While the recognition of the benefits of such linking is not new, the systematic implementation of linking resources is not yet widespread, Some recent examples of implementation include the Global Change Information System which linked findings from the Third US National Climate Assessment with their underlying data (e.g.,; ) and the tracing of indicators found within Integrated Ecosystem Assessments ( ). In geology, persistent identifiers are core elements of digital metadata records, and are especially useful when space or resource requirements complicate storage of the samples described therein ( ).