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shimazakiite

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Journal Article
Published: 01 February 2013
Mineralogical Magazine (2013) 77 (1): 93–105.
...I. Kusachi; S. Kobayashi; Y. Takechi; Y. Nakamuta; T. Nagase; K. Yokoyama; K. Momma; R. Miyawaki; M. Shigeoka; S. Matsubara Abstract Shimazakiite occurs as greyish white aggregates up to 3 mm in diameter. Two polytypes, shimazakiite-4 M and shimazakiite-4 O , have been identified, the former...
FIGURES
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Journal Article
Published: 01 February 2016
American Mineralogist (2016) 101 (2): 487–492.
...Dmitriy I. Belakovskiy; Fernando Cámara © 2016 Mineralogical Society of America 2016 This New Mineral Names has entries for 10 new minerals, including barikaite, deveroite-(Ce), hizenite-(Y), kobyashevite, leverettite, magnesiokoritnigite, mössbauerite, shimazakiite (4 M and 4 O...
Image
Illustrations of the crystal structures of shimazakiite-4M (left) and shimazakiite-4O (right) using VESTA (Momma and Izumi, 2011), showing the different stacking sequences of 4 layers of B2O3 and Ca polyhedra.
Published: 01 February 2013
F ig . 5. Illustrations of the crystal structures of shimazakiite-4 M (left) and shimazakiite-4 O (right) using VESTA ( Momma and Izumi, 2011 ), showing the different stacking sequences of 4 layers of B 2 O 3 and Ca polyhedra.
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The infrared spectrum of shimazakiite-4M.
Published: 01 February 2013
F ig . 3. The infrared spectrum of shimazakiite-4 M .
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A TEM image of shimazakiite-4M. The crystal includes numerous planar defects parallel to (001). The thickness of the lamellae is on the nanometre scale and the sequence of the planar faults is random.
Published: 01 February 2013
F ig . 2. A TEM image of shimazakiite-4 M . The crystal includes numerous planar defects parallel to (001). The thickness of the lamellae is on the nanometre scale and the sequence of the planar faults is random.
Image
The &lt;1İ10&gt;*–c* electron diffraction pattern of shimazakiite-4M. The pattern is streaked along [001]*. The twin relation between the unit cells is shown by dashed and solid parallelograms.
Published: 01 February 2013
F ig . 4. The <1İ10>*– c * electron diffraction pattern of shimazakiite-4 M . The pattern is streaked along [001]*. The twin relation between the unit cells is shown by dashed and solid parallelograms.
Image
Photomicrographs of shimazakiite-4M characterized by lamellar twinning between crossed polars; the field of view is ~0.9 × 1.2 mm. Most of the granular crystals without twinning are takedaite or calcite.
Published: 01 February 2013
F ig . 1. Photomicrographs of shimazakiite-4 M characterized by lamellar twinning between crossed polars; the field of view is ~0.9 × 1.2 mm. Most of the granular crystals without twinning are takedaite or calcite.
Image
Published: 01 February 2013
T able 2 a . X-ray diffraction data for shimazakiite-4 M . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 9.60 9.62 4 0 1 1 27 6.03 6.03 6.03 18 0 1 2 14 5.31 5.30 5.30 5 0 1 4 30 3.84 3.83
Image
Published: 01 February 2013
T able 2 a . X-ray diffraction data for shimazakiite-4 M . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 9.60 9.62 4 0 1 1 27 6.03 6.03 6.03 18 0 1 2 14 5.31 5.30 5.30 5 0 1 4 30 3.84 3.83
Image
Published: 01 February 2013
T able 2 a . X-ray diffraction data for shimazakiite-4 M . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 9.60 9.62 4 0 1 1 27 6.03 6.03 6.03 18 0 1 2 14 5.31 5.30 5.30 5 0 1 4 30 3.84 3.83
Image
Published: 01 February 2013
T able 2 a . X-ray diffraction data for shimazakiite-4 M . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 9.60 9.62 4 0 1 1 27 6.03 6.03 6.03 18 0 1 2 14 5.31 5.30 5.30 5 0 1 4 30 3.84 3.83
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84
Image
Published: 01 February 2013
T able 2 b . X-ray diffraction data for shimazakiite-4 O . h k l I obs d obs d calc * d calc ** I calc ** 0 0 2 3 9.63 9.62 9.63 3 0 1 1 19 6.03 6.03 6.03 13 0 1 2 7 5.30 5.30 5.30 4 0 1 4 33 3.84