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26 results for “Jana”
"Chirality and accurate structure models by exploiting dynamical effects in continuous-rotation 3D ED data". Raw data and JANA refinement files.
<p><strong>Chirality and accurate structure models by exploiting dynamical effects in continuous-rotation 3D ED data</strong><br> 3D ED data sets of 5 compounds and JANA refinement files of 12 compounds</p> <p><strong>Relevant tools</strong><strong>:</strong></p> <ul> <li>PETS2: data reduction and analysis of electron diffraction patterns <ul> <li>Download program and access step-by-step tutorials at <a href="http://pets.fzu.cz/">http://pets.fzu.cz/</a></li> <li>Palatinus, L. <em>et al.</em> Specifics of the data processing of precession electron diffraction tomography data and their implementation in the program PETS2.0. <em>Acta Cryst. B</em><strong>75</strong>, 512–522 (2019). <a href="https://doi.org/10.1107/S2052520619007534">DOI: 10.1107/S2052520619007534</a></li> </ul> </li> <li>JANA2006: crystal structure model refinement program <ul> <li>Download program from <a href="http://jana.fzu.cz/">http://jana.fzu.cz/</a> and access step-by-step tutorials at <a href="http://pets.fzu.cz/">http://pets.fzu.cz/</a></li> <li>Results here were obtained with JANA2006. We recommend using JANA2020.</li> <li>Petricek, V., Dusek, M. & Palatinus, L. Crystallographic Computing System JANA2006: General features. <em>Z. Kristallogr.</em> <strong>229</strong>, 345–352 (2014). <a href="https://doi.org/10.1515/zkri-2014-1737">DOI: 10.1515/zkri-2014-1737</a></li> </ul> </li> <li>DYNGO: Bloch wave program, calculates dynamical diffraction intensities and derivatives <ul> <li>Program automatically included in JANA2006/JANA2020</li> <li>Palatinus, L., Petříček, V. & Corrêa, C. A. Structure refinement using precession electron diffraction tomography and dynamical diffraction: theory and implementation. <em>Acta Cryst. A</em><strong>71</strong>, 235–244 (2015). <a href="https://doi.org/10.1107/S2053273315001266">DOI: 10.1107/S2053273315001266</a></li> </ul> </li> </ul> <p><strong>3D ED data sets:</strong></p> <p>STW_HPM-1 (RT) was measured on a JEOL JEM-2100-LaB6 and diffraction patterns were recorded with an ASI Timepix detector. Another sample of STW_HPM-1 was measured at a temperature of 100 K after cryotransfer with a Titan Krios (CETA-D detector). The other data sets were measured on an FEI Tecnai G2 20 (Olympus SIS Veleta, CCD). Each data set contains the raw diffraction patterns (*.tif) and the basic input files needed to reproduce the data reduction with PETS2 as used in the associated publication (*.pts2, *.celllist, *.cenloc). Step-by-step tutorials are provided for quartz and glycine (and selected steps for abiraterone acetate) at <a href="http://pets.fzu.cz/">http://pets.fzu.cz/</a>.</p> <ul> <li>α-quartz, stepwise continuous-rotation and precession-assisted (2 data sets from the same crystal)</li> <li>natrolite, stepwise continuous-rotation and precession-assisted (2 data sets from the same crystal)</li> <li>cobalt aluminophosphate (CAP), static ED patterns recorded in 0.1° steps (3 data sets from 2 crystals)</li> <li>abiraterone acetate, stepwise continous-rotation (5 data sets from 5 crystals)</li> <li>STW_HPM-1, continuous-rotation (1 data set, room temperature)</li> <li>STW_HPM-1, continuous-rotation (1 data set, <em>T</em> = 100 K, cryotransfer)</li> </ul> <p><strong>JANA refinement and CIF files:</strong></p> <p>CIF (Crystallographic Information Framework) files include two data items. The first is related to the dynamical and the second to the kinematical refinement. Relevant parameters and statistics specific for dynamical refinement are found in the field _refine_special_details.</p> <p>JANA files are provided for the dynamical and kinematical refinement at the stage after the final refinement cycle together with the original input files generated by PETS2. For quartz and natrolite, relevant files for the refinements against precession-assisted 3D ED data are included. For abiraterone acetate and limaspermidine, relevant files for the absolute structure determination are included.</p> <ul> <li>α-quartz</li> <li>albite</li> <li>mordenite</li> <li>natrolite</li> <li>STW_HPM-1</li> <li>cobalt aluminophosphate (CAP)</li> <li>CAU-36</li> <li>α-glycine</li> <li>carbamazepine</li> <li>(+)-limaspermidine</li> <li>abiraterone acetate</li> <li>MBBF4</li> </ul> <p>For the kinematical refinements based on more than one data set, the self-written tool "CompInt" (unpublished) was used. The tool can be found in the file "tool_scalehkl_compint.zip". Input (*.hkl, *.compint) and output files (*.scalehkl) are provided in the respective folder with the JANA files.</p> <p>Raw data sources of other data sets relevant for the associated publication are given in the SI of the associated publication.</p>
Výsledky měření z Knihovny Jana Palacha
<p>Příloha k bakalářské práci Fyzické podmínky uskladnění a ochrana fondu starých tisků ve vybraných knihovnách Filozofické fakulty Univerzity Karlovy (2023). </p><p> </p><p>Výsledky měření teploty a vlhkosti skladu Knihovny Jana Palacha, dílčí knihovny Knihovny Filozofické fakulty (Univerzity Karlovy). </p>
Dataset associated to Janas, D. M. et al., Inorg. Chim. Acta, 557, 121705 (2023)
<p>The raw data that support the findings of the study "Metalloporphyrins on oxygen-passivated iron: Conformation and order beyond the first layer" (https://doi.org/10.1016/j.ica.2023.121705). The data analysis was performed using the software "ImageJ" and "Igor Pro 8". Experimental files (.pxp) of the processed data are available from the corresponding authors upon reasonable request.</p>
Dataset associated to Janas, D. M. et al., Adv. Mater. 2022, 2205698
<p>The raw data that support the findings of the study "Enhancing Electron Correlation at a 3d Ferromagnetic Surface" (https://doi.org/10.1002/adma.202205698). The data analysis was performed using the software "ImageJ" and "Igor Pro 8". Experimental files (.pxp) of the processed data are available from the corresponding authors upon reasonable request.</p>
FIGURES 1–6 in The adults of Camelobaetidius janae Dominique & Thomas, 2001 and C. yacutinga Nieto, 2003, with a new synonym for C. leentvaari Demoulin, 1966 (Ephemeroptera: Baetidae)
FIGURES 1–6. Adults of Camelobaetidius janae. 1–5, male imago; 6, female imago. 1, body (lateral view). 2, body (dorsal view). 3, forewing. 4a, hind wing. 4b, hind wing (enlarged). 5, genitalia. 6, body (dorsal view). Abbreviations: I, II, III: forceps segments I, II, III, respectively.
FIGURES 7–13 in The adults of Camelobaetidius janae Dominique & Thomas, 2001 and C. yacutinga Nieto, 2003, with a new synonym for C. leentvaari Demoulin, 1966 (Ephemeroptera: Baetidae)
FIGURES 7–13. Adults of Camelobaetidius yacutinga. 7–12, male imago; 13, female imago. 7, body (lateral view). 8, body (dorsal view). 9, forewing. 10a, hind wing. 10b, hind wing (enlarged). 11, detail of middle tarsi. 12, genitalia. 13, body (dorsal view). Abbreviations: I, II, III: forceps segments I, II, III, respectively.
FIGURES 14–15 in The adults of Camelobaetidius janae Dominique & Thomas, 2001 and C. yacutinga Nieto, 2003, with a new synonym for C. leentvaari Demoulin, 1966 (Ephemeroptera: Baetidae)
FIGURES 14–15. Detail of prosternum of the mature nymph of Camelobaetidius leentvaari. 14, short thoracic gill at base of foreleg (ventro-lateral). 15, extremely short thoracic gill at base of foreleg (ventro-lateral).
FIGURE 25. Simothraulopsis janae, male imago. A in Systematics of Simothraulopsis Demoulin, 1966 (Ephemeroptera: Leptophlebiidae)
FIGURE 25. Simothraulopsis janae, male imago. A) forewing; B) hind wing; C) enlarged hind wing; D) genitalia, ventral view (arrow indicate the sclerotized thin plate on dorsal region of the penis).
FIGURE 24. Simothraulopsis janae, male imago. A in Systematics of Simothraulopsis Demoulin, 1966 (Ephemeroptera: Leptophlebiidae)
FIGURE 24. Simothraulopsis janae, male imago. A) habitus, dorsal view; B) habitus, lateral view; C) head and thorax, detail; D) genitalia, ventral view.
FIGURE 26. Simothraulopsis janae, nymph. A in Systematics of Simothraulopsis Demoulin, 1966 (Ephemeroptera: Leptophlebiidae)
FIGURE 26. Simothraulopsis janae, nymph. A) dorsal view; B) lateral view; C) abdomen, ventral view; D) gill IV.
FIGURE 4 in Dipcadi janae-shrirangii (Asparagaceae), a new species from the lateritic plateaus of Konkan region of Maharashtra, India
FIGURE 4. Flowers of Dipcadi goaense (A–C), Comparison between flowers & L.S. of flowers in D. concanense (D) & (F) and in D. goaense (E) & (G). Chromosome number (H) in D. goaense. Photos by S.R. Yadav & K.V.C. Gosavi.
FIGURE 1 in Dipcadi janae-shrirangii (Asparagaceae), a new species from the lateritic plateaus of Konkan region of Maharashtra, India
FIGURE 1. Dipcadi janae-shrirangii Chandore, Borude, Bhalekar, Madhav & Gosavi sp. nov. (Chandore 2095) A. Habit; B. Bract; C. Flower; D. Outer perianth; E. Inner perianth with stamens; F. Pistil; G. Fruit; H. Seed. Illustration drawn by N.A. Madhav.
FIGURE 3 in Dipcadi janae-shrirangii (Asparagaceae), a new species from the lateritic plateaus of Konkan region of Maharashtra, India
FIGURE 3. Comparison between selected characters of D. janae-shrirangii and D. concanense. Habitat, flowers & habit (A), (B) & (E) in D. janae-shrirangii and (C), (D) & (F) in D. concanense. Capsule (G) & (I) in D. janae-shrirangii and (H) & (J) in D. concanense. Chromosome number (K) in D. janae-shrirangii and (L) in D. concanense. Photos by A.N. Chandore & K.V.C. Gosavi.
FIGURE 2 in Dipcadi janae-shrirangii (Asparagaceae), a new species from the lateritic plateaus of Konkan region of Maharashtra, India
FIGURE 2. Comparison between selected characters of D. janae-shrirangii and D. concanense. Flowers, L.S. & top view of flowers (A), (C) & (F) in D. janae-shrirangii and (B), (D) & (E) in D. concanense. Outer perianth lobe (G) in D. janae-shrirangii and (H) in D. concanense. Inner perianth lobe (I) in D. janae-shrirangii and (J) in D. concanense. Anther (K) in D. janae-shrirangii and (L) in D. concanense. Bract (M) in D. janae-shrirangii and (N) in D. concanense. Style (O) in D. janae-shrirangii and (P) in D. concanense. Ovary (Q) in D. janae-shrirangii and (R) in D. concanense. Capsule (S) in D. janae-shrirangii and (T) in D. concanense. Seeds (U) in D. janaeshrirangii and (V) in D. concanense. Photos by A.N. Chandore.
FIGURE 4 in Squalius janae, a new species of fish from the Adriatic Sea basin in Slovenia (Actinopterygii: Cyprinidae)
FIGURE 4. Lateral view of head of: a, Squalius janae, paratype, PZC 453, 157.6 mm SL; b, Squalius squalus, PZC 287, 155.4 mm SL, Italy: Po.
FIGURE 1 in Squalius janae, a new species of fish from the Adriatic Sea basin in Slovenia (Actinopterygii: Cyprinidae)
FIGURE 1. Map showing localities of specimens examined from the north and north-eastern Adriatic basin.
FIGURE 9 in Squalius janae, a new species of fish from the Adriatic Sea basin in Slovenia (Actinopterygii: Cyprinidae)
FIGURE 9. Habitat of Squalius janae, Slovenia: Dragonja at bridge on road from Župančiči, 6 August 2009.
FIGURE 8 in Squalius janae, a new species of fish from the Adriatic Sea basin in Slovenia (Actinopterygii: Cyprinidae)
FIGURE 8. Pattern of flank-scale pigmentation (below dorsal-fin base) in life of a, Squalius janae (a); b, S. squalus.
FIGURE 3. Globba janae Sangvir. & M.F in Eight new species of Globba (Zingiberaceae) from Thailand and Lao PDR
FIGURE 3. Globba janae Sangvir. & M.F.Newman (Leong-Škorničková et al. 1804 (A, B, G) and O. Insisiengmay et al. OI-337 (C–F)) A–B. Habitat C. Inflorescence D. Flower, front view E. Bract F. Bracteoles G. Tip of cincinnus H. Flower I. Ovary and calyx J. Fruit. Scale bars: C–H. & J = 1 cm; I = 5 mm. Photographs A, B & G by Jana Leong-Škorničková; C–F & H–J by S. Sangvirotjanapat.
What is MULTIPLIERS? Interview with researcher Jana Schilbert
<p>Jana Schilbert, Phd. student explains the MULTIPLIERS project, the importance of Open Schooling and why is it so important to involve the youth in science-based decision making. This project received funding from the European Union's Horizon 2020 Research and Innovation Programme under Grant Agreement No. 101006255. More information at multipliers-project.org</p>
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