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638 results for “thinning”
Text-fig. 2. Light micrographs of Pinus spp. cuticles prepared with the modified, gentle bleaching procedure. a: Cuticle 1, Pinus sp. 1. Nearly the entire width of the leaf has been preserved. Five parallel rows of stomata are visible. b: Cuticle 1, close-up of (a). Two guard cells are visible around each stoma. c: Cuticle 1, close-up of eight stomata. Two guard cells and eight subsidiary cells are visible around each stoma. d: Cuticle 2, Pinus sp. 2. Some folding of the cuticle occurred during preparation, but many parallel rows of stomata on both sides of a thin, central midvein are evident. e: Cuticle 2, close-up of (d). Pairs of guard cells surround each stoma. f: Cuticle 2, close-up of (e). Subsidiary and epithelial cells can be observed around the stomata. in A Modified, Step-By-Step Procedure For The Gentle Bleaching Of Delicate Fossil Leaf Cuticles
Text-fig. 2. Light micrographs of Pinus spp. cuticles prepared with the modified, gentle bleaching procedure. a: Cuticle 1, Pinus sp. 1. Nearly the entire width of the leaf has been preserved. Five parallel rows of stomata are visible. b: Cuticle 1, close-up of (a). Two guard cells are visible around each stoma. c: Cuticle 1, close-up of eight stomata. Two guard cells and eight subsidiary cells are visible around each stoma. d: Cuticle 2, Pinus sp. 2. Some folding of the cuticle occurred during preparation, but many parallel rows of stomata on both sides of a thin, central midvein are evident. e: Cuticle 2, close-up of (d). Pairs of guard cells surround each stoma. f: Cuticle 2, close-up of (e). Subsidiary and epithelial cells can be observed around the stomata.
IODP Expedition 385 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
Surface acoustic wave resonators on thin film piezoelectric substrates in the quantum regime - data archive
<p>The Archive contains all raw and processed (fitted) data that is used in the manuscript "surface acoustic wave resonators on thin film piezoelectric substrates in the quantum regime" submitted to IOP Materials for quantum technology.</p>
Spinodal dewetting of liquid-liquid thin-films
<p>The spinodal dewetting of a thin liquid polystyrene (PS) film from a liquid polymethylmethacrylate (PMMA) substrate is investigated experimentally and theoretically. Comparing experimental results of the evolving PS-air and PS-PMMA interfaces with the predictions from linear stability analysis shows that both spinodal wavelength and rupture times deviate unexpectedly. The key factor for this discrepancy is the altered mode selection process due to the initial surface roughness of the liquid-air and liquid-liquid interfaces perturbed by partially correlated colored noise in the linearly unstable region. The strong impact of noise on the mode selection and on the rupture time is clearly demonstrated through long-time numerical solutions of the full nonlinear model when compared to experimental results. This strong impact of noise is relevant only for liquid bilayers, and not for spinodal dewetting on solids, due to the presence of two moving interfaces and calls for new strategies to incorporate also thermal fluctuations into the modelling of those systems. </p>
Dataset for "Development of an ultra-thin parallel plate ionization chamber for dosimetry in FLASH radiotherapy"
<p>Dataset for paper:</p> <p>Gómez F, Gonzalez-Castaño DM, Fernández NG,Pardo-Montero J, Schüller A, Gasparini A,Vanreusel V, Verellen D, Felici G, Kranzer R, Paz-Martín J.</p> <p>Development of an ultra-thin parallel plate ionization chamber for dosimetry in FLASH radiotherapy.</p> <p>Med Phys.2022;49:4705–4714.</p> <p><a href="https://doi.org/10.1002/mp.15668">https://doi.org/10.1002/mp.15668</a></p>
IODP Expedition 350 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
IODP Expedition 352 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
IODP Expedition 376 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
IODP Expedition 351 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
IODP Expedition 374 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
IODP Expedition 354 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
Data and code for "Brilliant whiteness in shrimp from ultra-thin layers of birefringent nanospheres"
<p>Data and code for "Brilliant whiteness in shrimp from ultra-thin layers of birefringent nanospheres"</p>
5D-NP-FABTECH_FSG - Open Dataset for "Highly Conformable Terahertz Metasurface Absorbers via Two-photon Polymerization on Polymeric Ultra-thin Films"
<p>This is the open dataset for the paper: "Ottomaniello Andrea, Paolo Vezio, Omar Tricinci, Frank Marco den Hoed, Paul Dean, Alessandro Tredicucci and Virgilio Mattoli, Highly Conformable Terahertz Metasurface Absorbers via Two-photon Polymerization on Polymeric Ultra-thin Films, On line (2023) [DOI:10.5281/zenodo.7838033]".</p> <p>This include the Supplementary Information file ("suppl_j_nanoph-2022-0667_suppl.pdf"), all the source material used for the paper preparation and more. </p> <p>For each folder (sub-dataset) there is a corresponding readme file describing the content and including metadata</p>
Origin, extent, and emplacement conditions of newly exposed pillow lavas in the Kverkfjöll region, Iceland - field photos and thin sections
<p>Fieldwork photos from Kverkfjöll, Iceland, since 2020 as a part of fieldwork-based master's thesis in geology, where a pillow lava and hyaloclastite formation was studied. Included are field photos and composited field photos, along with a map showing where said photos are. Also included are photomicrographs of thin sections, scanned and labeled photos of each thin section, and their rough position within each pillow crust sample. Please refer to the actual thesis for more information: Origin, extent, and emplacement conditions of newly exposed pillow lavas in the Kverkfjöll region, Iceland (Valdimarsdóttir, 2023).</p>
BeMAGIC_Nanoporous films and ultra-thin films for magneto-ionics and surface charging experiments
<p>BeMAGIC ITN (GA861145) Nanoporous films and ultra-thin films for magneto-ionics and surface charging experiments. Results from TUC, UCAM, AALTO and KIT</p>
IODP Expedition 369 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
IODP Expedition 382 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
IODP Expedition 392 Thin section images
<p>Hard rock and sediment thin section images were acquired using either the JRSO-developed Petrographic Image Capture and Archival Tool (PICAT) imager or (rarely) an upright microscope and a digital camera. Sample images are acquired in unpolarized, polarized, and/or cross-polarized light. Image files are presented compressed by hole.</p>
Scanning Precession Electron Tomography (SPET) for Structural Analysis of Thin Films along Their Thickness
<p> _______________________________________________________________________________<br> | General information: <br> |_______________________________________________________________________________<br> | Article | Scanning Precession Electron Tomography (SPET) for Structural Analysis <br> | | of Thin Films along Their Thickness <br> |<br> | Authors | Sara Passuti, Julien Varignon, Adrian David, Philippe Boullay <br> |<br> | Journal | Symmetry 2023, 15, 1459 <br> | <br> | DOI | 10.3390/sym15071459 <br> | <br> | Funding | NanED (www.naned.eu)(ESR project 12) <br> | <br> | Project Label | PVO_STO <br> | <br> | Sample Label | PVO_STO <br> | <br> | Dataset description | SPET (scanning precession electron tomography) acquisition on <br> | | the PVO thin film deposited on STO substrate, analyzed in section</p> <p>| | in the form of a TEM lamella. In the main folder the datasets</p> <p>| | corresponding to each one of the analyzed areas of the </p> <p>| | sample at different thicknesses (i.e. distances from the </p> <p>| | interface with the substrate) is found.<br> |______________________________________________________________________________<br> | Experimental <br> |_______________________________________________________________________________<br> | Data Type | Electron diffraction data - 3D ED <br> | <br> | Data collection method | SPET (Scanning Precession Electron Tomography) <br> | <br> | Number of experimental frames | 57 <br> | <br> | tilt range | -50.7° to +43.5° <br> | <br> | Exposure time per frame | 500 ms <br> | <br> | Software used for the data collection | ASI Accos <br> |______________________________________________________________________________<br> | Instrumental: |<br> |_______________________________________________________________________________|<br> | Instrument | Transmission electron microscope <br> | | Jeol F200 <br> | Radiation source | cold FEG <br> | <br> | Accelerating voltage | 200 kV <br> | <br> | Wavelength | 0.0251 Å <br> | <br> | Probe Type | Microdiffraction <br> | <br> | Beam Diameter | 10 nm <br> | <br> | Beam Convergence | Parallel beam, convergence <0.1mrad <br> | <br> | Detector | Hybrid pixel detector ASI Cheetah M3 <br> | <br> | Number of pixels in the image | 512 x 512 <br> | <br> | Pixel size | 55 µm x 55 µm <br> | <br> | Effective camera length | 200 mm <br> | <br> | Calibration constant | 0.00708 Å-1/pixel <br> |______________________________________________________________________________<br> | Sample description: <br> |_______________________________________________________________________________<br> | Name | PVO thin film on STO substrate <br> | | at thickness = 0.52 nm <br> | | film deposited by SPS and cut by FIB <br> | <br> | Chemical composition | PrVO3, SrTiO3 <br> | <br> | Number of crystals contributing | 1 <br> | to the data set <br> |______________________________________________________________________________<br> | Authorship and bibliography <br> |_______________________________________________________________________________<br> | Author of the data | Sara Passuti (ESR 12) <br> | <br> | Related data <br> | <br> |______________________________________________________________________________<br> | Files and data formats <br> |_______________________________________________________________________________<br> | Image format | tiff_16bit <br> | <br> | Folders/files | layer_#1_0.52_nm <br> | | layer_#2_3.28_nm <br> | | layer_#3_4.20_nm <br> | | layer_#4_5.12_nm <br> | | layer_#5_7.88_nm <br> | | layer_#6_9.72_nm <br> | | layer_#7_12.48_nm <br> | | layer_#8_17.08_nm <br> | | layer_#9_29.08_nm <br> | | substrate <br> | | each of the folders contains the respective "tiff" folder containing <br> | | the diffraction patterns in tiff format and the files for the analysis,<br> | | as well as the metadata file with the specific information of the <br> | | dataset <br> ______________________________________________________________________________<br> Notes: <br> _______________________________________________________________________________</p>
LATTE LAO thin films luminescence
<p>LATTE LAO thin films luminescence</p>
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.