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690 results for “antennae”
Figure 4 in Protoliota paleus sp. nov. (Coleoptera: Silvanidae) - new long antennae beetle in mid-Cretaceous Burmese amber
Figure 4. Another angle of the third protarsome of Protoliota paleus showing the exuded rows of droplets (arrows). Scale bar = 36 µm.
Figure 3 in Protoliota paleus sp. nov. (Coleoptera: Silvanidae) - new long antennae beetle in mid-Cretaceous Burmese amber
Figure 3. Foretarsus of holotype of Protoliota paleus sp. nov. in Burmese amber. c = simple falcate claw; s = setiferous setae on third protarsomere. Scale bar = 47 µm.
TEXT-FIGURE I. Leptomydas omeri sp. n. (A) Third segment and terminal club of left antenna. (B) Lateral view of hypopygium. in A New Mydaid Fly from South Africa (Diptera : Mydaidre)
TEXT-FIGURE I. Leptomydas omeri sp. n. (A) Third segment and terminal club of left antenna. (B) Lateral view of hypopygium.
FIGURE 18 Antenna. Lateral view, A in Systematic position and composition of Merodon nigritarsis and M. avidus groups (Diptera, Syrphidae) with a description of four new hoverfLies species
FIGURE 18 Antenna. Lateral view, A) Merodon longisetus sp. n., male, B) Merodon longisetus sp. n., female, C) Merodon obstipus sp. n., male, D) Merodon obstipus sp. n., female, E) Merodon cohurnus sp. n., male. Scale: 0.5 mm. gl–basoflagellomere.
Control of odor sensation by light and cryptochrome in the Drosophila antenna
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Data from: Has gene expression neofunctionalization in the fire ant antennae contributed to queen discrimination behavior?
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Maximum performance expression is affected by octopamine and antennae removal in Acheta domesticus
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FCA-estimated wind using EAR spaced antenna
<p>Dataset for horizontal wind estimation using EAR spaced antenna from configuration 1, 2, 3, 4, and 5.</p> <p>These are the output from FCA method. </p>
Informing antenna design for Global 21-cm experiments using a simulated Bayesian data analysis pipeline (supplementary data)
<p>These are the posterior files, foreground simulation data sets and chromaticity factor values used to produce the results for <a href="https://arxiv.org/abs/2106.10193">arXiv:2106.10193</a>.</p> <p>Plots of the fitted signal and residuals for each case are included, as is a plotting function to reproduce key figures.</p> <p>Naming conventions:</p> <ul> <li>f0: Centre frequency of the 21cm signal present in the simulated data</li> <li>A: Amplitude of the simulated 21cm signal present in the simulated data</li> <li>M_sig: Model being fit to the data includes a 21cm signal</li> <li>M_nosig: Model being fit to the data is a foreground only</li> </ul> <p>Software used:</p> <ul> <li><a href="https://github.com/PolyChord/PolyChordLite/tree/839292290a7747dbee82933bb9f7f955ac45c3ca">PolyChord</a></li> </ul> <p> </p>
Figures 1–7. - Scolioneuravaccinii. 1 Dorsal 2 Lateral 3 Antenna 4 Head front 5 Head dorsal 6 Hind tarsus 7 Sheath, lateral.
Figures 1–7. - Scolioneuravaccinii. 1 Dorsal 2 Lateral 3 Antenna 4 Head front 5 Head dorsal 6 Hind tarsus 7 Sheath, lateral.
Figure 1. - Leucotrichiamelleopicta Mosely, 1934 (holotype, NHM). A head and antennae, dorsal B palps C thorax, dorsal D legs and spur formula (1.3.4) E wings.
Figure 1. - Leucotrichiamelleopicta Mosely, 1934 (holotype, NHM). A head and antennae, dorsal B palps C thorax, dorsal D legs and spur formula (1.3.4) E wings.
Figure 3. - Head and antennae: A Leucotrichiafairchildi Flint, 1970 (UMSP000140357) B Leucotrichiainflaticornis Botosaneanu, 1993 (UMSP000140327) C Leucotrichiapictipes (Banks, 1911) (MCZ11597).
Figure 3. - Head and antennae: A Leucotrichiafairchildi Flint, 1970 (UMSP000140357) B Leucotrichiainflaticornis Botosaneanu, 1993 (UMSP000140327) C Leucotrichiapictipes (Banks, 1911) (MCZ11597).
Figure 3. - Brightfield image showing the female antenna of Pteroceraphronmirabilipennis Dessart 1981.
Figure 3. - Brightfield image showing the female antenna of Pteroceraphronmirabilipennis Dessart 1981.
Figs 38–41. Antennae morphology. 38 in ON SPLITTING OF THE GENUS NOTOCUPES (COLEOPTERA: ARCHOSTEMATA): NEW DATA ON MORPHOLOGY AND TAXONOMY
Figs 38–41. Antennae morphology. 38 – filiform of Notocupes pulcher; 39 – moniliform
Computational linguistics based text emotion analysis using enhanced beetle antenna search with deep learning during COVID-19 pandemic
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CV-QKD antenna designs and simulations
<p>Antenna designs and simulations for a radiofrequency channel output of an integrated photonics CV-QKD transmitter</p>
A synthetic moving-envelope metasurface antenna for arbitrary harmonic orders independent control
<p>Raw measured data for the paper "A synthetic moving-envelope metasurface antenna for arbitrary harmonic orders independent control"</p>
Source Data for the publication: "A different perspective for nonphotochemical quenching in plant antenna complexes"
<p>This dataset contains the raw data for all the results shown in the paper either in Excel or in csv format.</p> <p>The Excel file contains one Excel sheet for each figure panel:</p> <ul> <li>Figure 2a</li> <li>Figure 2b</li> <li>Figure 3a</li> <li>Figure 3d</li> <li>Figure 4a</li> <li>Figure 4b</li> <li>Figure 4c</li> <li>Figure 5b</li> <li>Supplementary Figure 2</li> <li>Supplementary Figure 3</li> <li>Supplementary Figure 4</li> <li>Supplementary Table 1</li> <li>Supplementary Figure 5</li> <li>Supplementary Figure 6</li> <li>Supplementary Figure 7</li> <li>Supplementary Figure 11e</li> </ul> <p>The zipped csv files contain the remaining figures (one per file) and are named accordingly</p>
Dataset for publication: Test Bench and Frequency Response of a Magnetic Antenna used in GIS PD Measurements
<p>Data set belonging to the <a href="https://ieeexplore.ieee.org/xpl/conhome/9611374/proceeding">2021 IEEE Electrical Insulation Conference (EIC)</a> paper with DOI: <a href="https://doi.org/10.1109/EIC49891.2021.9612372">10.1109/EIC49891.2021.9612372</a></p> <p>The authors preprint is available from Zendodo with DOI: <a href="https://doi.org/10.5281/zenodo.5815710">10.5281/zenodo.5815710</a>. </p> <p>Mier Escurra, Christian; Mor, Armando Rodrigo</p> <p><em>Test Bench and Frequency Response of a Magnetic Antenna used in GIS PD Measurements</em></p>
Development of Rotaxanes as E-Field Sensitive Superstructures in Plasmonic Nano-Antennas
<p>NMR, HR-MS, UV-VIS, Fluorescence, and Photoluminescence data of the graphs and supplementary data provided with the manuscript.</p>
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International Brain Laboratory public data
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OpenNeuro
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