Provenance studies involving U/Pb analysis of detrital zircons have become increasingly popular through the application of microanalytical techniques. Adopted one-dimensional methods for the presentation of detrital zircon data, such as probability density distribution plots, generally require various degrees of filtering of discordant analyses. However, a uniform approach for filtering does not exist, making comparison of data from different samples and sedimentary units, as well as different studies of detrital populations, extremely difficult. The problem is further complicated by the need to switch from Pb-207/Ph-206 based ages to Pb-206/U-238 ages when zircon populations within a sample show a range of ages from Archean to Proterozoic ...
AbstractZircon U–Pb geochronology has become a keystone tool across Earth science, arguably providin...
Dating zircon by U–Pb in the Pleistocene Bishop Tuff is challenging because the concentration of rad...
Dating zircon by U-Pb in the Pleistocene Bishop Tuff is challenging because the concentration of rad...
Provenance studies involving U / Pb analysis of detrital zircons have become increasingly popular th...
Zircon is the most widely used mineral in detrital dating studies because it is common to multiple r...
Detrital zircon U-Pb dating is a powerful tool to trace sources for sedimentary basin and to underst...
Detrital zircon U–Pb geochronology is a rapidly expanding and useful technique for addressing the se...
U-Pb isotopic dating of detrital zircon has the potential to yield important insight into a variety...
The method of obtaining zircon samples affects estimation of the global U-Pb age distribution. Resea...
Understanding the origins, or provenance, of a sedimentary deposit is an important aspect of geology...
Detrital studies that utilise zircon U-Pb geochronology and fission-track (FT) thermochronometry are...
information contained in detrital zircons may be a combination of random and nonrandom selection of ...
Zircon U–Pb geochronology has become a keystone tool across Earth science, arguably providing the go...
Detrital studies that utilize zircon U–Pb geochronology and fission-track (FT) thermochronometry are...
The bulk of sedimentary provenance studies use similarities in the detrital zircon age patterns or “...
AbstractZircon U–Pb geochronology has become a keystone tool across Earth science, arguably providin...
Dating zircon by U–Pb in the Pleistocene Bishop Tuff is challenging because the concentration of rad...
Dating zircon by U-Pb in the Pleistocene Bishop Tuff is challenging because the concentration of rad...
Provenance studies involving U / Pb analysis of detrital zircons have become increasingly popular th...
Zircon is the most widely used mineral in detrital dating studies because it is common to multiple r...
Detrital zircon U-Pb dating is a powerful tool to trace sources for sedimentary basin and to underst...
Detrital zircon U–Pb geochronology is a rapidly expanding and useful technique for addressing the se...
U-Pb isotopic dating of detrital zircon has the potential to yield important insight into a variety...
The method of obtaining zircon samples affects estimation of the global U-Pb age distribution. Resea...
Understanding the origins, or provenance, of a sedimentary deposit is an important aspect of geology...
Detrital studies that utilise zircon U-Pb geochronology and fission-track (FT) thermochronometry are...
information contained in detrital zircons may be a combination of random and nonrandom selection of ...
Zircon U–Pb geochronology has become a keystone tool across Earth science, arguably providing the go...
Detrital studies that utilize zircon U–Pb geochronology and fission-track (FT) thermochronometry are...
The bulk of sedimentary provenance studies use similarities in the detrital zircon age patterns or “...
AbstractZircon U–Pb geochronology has become a keystone tool across Earth science, arguably providin...
Dating zircon by U–Pb in the Pleistocene Bishop Tuff is challenging because the concentration of rad...
Dating zircon by U-Pb in the Pleistocene Bishop Tuff is challenging because the concentration of rad...