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SEM backscattering images for minerals in coal-hosted... | Download  Scientific Diagram
SEM backscattering images for minerals in coal-hosted... | Download Scientific Diagram

A facile route for preparing rhabdophane rare earth phosphate nanorods -  Journal of Materials Chemistry (RSC Publishing)
A facile route for preparing rhabdophane rare earth phosphate nanorods - Journal of Materials Chemistry (RSC Publishing)

A Spectroscopic and Computational Study of Cm3+ Incorporation in Lanthanide  Phosphate Rhabdophane (LnPO4·0.67H2O) and Monazite (LnPO4) | Inorganic  Chemistry
A Spectroscopic and Computational Study of Cm3+ Incorporation in Lanthanide Phosphate Rhabdophane (LnPO4·0.67H2O) and Monazite (LnPO4) | Inorganic Chemistry

Determination of the Solubility of Rhabdophanes LnPO4·0.667H2O (Ln = La to  Dy) - Gausse - 2016 - European Journal of Inorganic Chemistry - Wiley  Online Library
Determination of the Solubility of Rhabdophanes LnPO4·0.667H2O (Ln = La to Dy) - Gausse - 2016 - European Journal of Inorganic Chemistry - Wiley Online Library

Incorporation of thorium in the rhabdophane structure: Synthesis and  characterization of Pr1-2xCaxThxPO4·nH2O solid solutions - ScienceDirect
Incorporation of thorium in the rhabdophane structure: Synthesis and characterization of Pr1-2xCaxThxPO4·nH2O solid solutions - ScienceDirect

EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of  the Babaryk massive sulfide occurrence (South Urals): scanning electron  microscope (SEM) and electron backscattered diffraction (EBSD) study
EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of the Babaryk massive sulfide occurrence (South Urals): scanning electron microscope (SEM) and electron backscattered diffraction (EBSD) study

EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of  the Babaryk massive sulfide occurrence (South Urals): scanning electron  microscope (SEM) and electron backscattered diffraction (EBSD) study
EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of the Babaryk massive sulfide occurrence (South Urals): scanning electron microscope (SEM) and electron backscattered diffraction (EBSD) study

REY minerals of hydrothermal ores (SEM, back-scattered electron... |  Download Scientific Diagram
REY minerals of hydrothermal ores (SEM, back-scattered electron... | Download Scientific Diagram

イットリウムラブドフェン / Rhabdophane-(Y) | イットリウムラブドフェン / Rhabdophane-… | Flickr
イットリウムラブドフェン / Rhabdophane-(Y) | イットリウムラブドフェン / Rhabdophane-… | Flickr

Minerals of the rhabdophane group and the alunite supergroup in  microgranite: products of low-temperature alteration in a highly acidic  environment from the Velence Hills, Hungary | Mineralogical Magazine |  Cambridge Core
Minerals of the rhabdophane group and the alunite supergroup in microgranite: products of low-temperature alteration in a highly acidic environment from the Velence Hills, Hungary | Mineralogical Magazine | Cambridge Core

EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of  the Babaryk massive sulfide occurrence (South Urals): scanning electron  microscope (SEM) and electron backscattered diffraction (EBSD) study
EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of the Babaryk massive sulfide occurrence (South Urals): scanning electron microscope (SEM) and electron backscattered diffraction (EBSD) study

Rhabdophane-(Ce) mineral information and data
Rhabdophane-(Ce) mineral information and data

Monazite, rhabdophane, xenotime & churchite: Vibrational spectroscopy of  gadolinium phosphate polymorphs - ScienceDirect
Monazite, rhabdophane, xenotime & churchite: Vibrational spectroscopy of gadolinium phosphate polymorphs - ScienceDirect

Wisconsin Geological & Natural History Survey » Rhabdophane Group
Wisconsin Geological & Natural History Survey » Rhabdophane Group

EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of  the Babaryk massive sulfide occurrence (South Urals): scanning electron  microscope (SEM) and electron backscattered diffraction (EBSD) study
EJM - Authigenic rhabdophane from brown iron ore of the oxidation zone of the Babaryk massive sulfide occurrence (South Urals): scanning electron microscope (SEM) and electron backscattered diffraction (EBSD) study

Monoclinic Form of the Rhabdophane Compounds: REEPO4·0.667H2O | Crystal  Growth & Design
Monoclinic Form of the Rhabdophane Compounds: REEPO4·0.667H2O | Crystal Growth & Design

Wisconsin Geological & Natural History Survey » Rhabdophane Group
Wisconsin Geological & Natural History Survey » Rhabdophane Group

The crystal structure of rhabdophane and archerite: (a) rhabdophane... |  Download Scientific Diagram
The crystal structure of rhabdophane and archerite: (a) rhabdophane... | Download Scientific Diagram

Modes of occurrence of rhabdophane, kaolinite, chamosite, and... | Download  Scientific Diagram
Modes of occurrence of rhabdophane, kaolinite, chamosite, and... | Download Scientific Diagram

Minerals of the rhabdophane group and the alunite supergroup in  microgranite: products of low-temperature alteration in a highly acidic  environment from the Velence Hills, Hungary | Mineralogical Magazine |  Cambridge Core
Minerals of the rhabdophane group and the alunite supergroup in microgranite: products of low-temperature alteration in a highly acidic environment from the Velence Hills, Hungary | Mineralogical Magazine | Cambridge Core

Rhabdophane-(Ce): Mineral information, data and localities.
Rhabdophane-(Ce): Mineral information, data and localities.

Minerals | Free Full-Text | The Gel Growth Technique—A Neglected Yet  Effective Tool to Prepare Crystals of Oxysalts and Supergene Minerals | HTML
Minerals | Free Full-Text | The Gel Growth Technique—A Neglected Yet Effective Tool to Prepare Crystals of Oxysalts and Supergene Minerals | HTML

From Th-Rhabdophane to Monazite-Cheralite Solid Solutions: Thermal Behavior  of Nd1–2xThxCaxPO4·nH2O (x = 0–0.15) | Crystal Growth & Design
From Th-Rhabdophane to Monazite-Cheralite Solid Solutions: Thermal Behavior of Nd1–2xThxCaxPO4·nH2O (x = 0–0.15) | Crystal Growth & Design