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115 results for “Solar eclipse”
Solar Eclipse 2017 recordings of medium-wave AM broadcast band from near Upsala, MN, U.S.A.
<p>recorded by Mark Durenberger</p> <p>location recorded: 45°49'38.98"N 94°37'47.97"W </p> <p>These data files are recordings of the entire medium wave broadcast band (535-1705kHz) from 16:57:22UT to 18:44:47UT from near Upsala, MN, U.S.A. Data files are .wav format, but the archived files are .zip, with two .wav files packaged together in each .zip file.</p> <p>Antenna: 1) from 16:57:22UTC until 17:53:05UTC: broadband delta loop antenna, 22-foot apex with a 40-foot base, oriented 260-80 degrees until 17:29UTC, then oriented to 210-30 degrees; using Wellbrook (https://www.wellbrook.uk.com/loopantennas/) ALA100 preamplifier</p> <p>2)from 17:53:56UT until 18:44:47UT: DKaz antenna (described at http://www.durenberger.com/documents/DKAZ070314.pdf), using DXEngineering RPA-1 preamplifier between antenna and receiver (https://www.dxengineering.com/parts/dxe-rpa-1), oriented 150-330 degrees</p> <p>Receiver: Microtelecom Perseus SDR (http://microtelecom.it/perseus/) with 10dB front end attenuation, center frequency set at 925kHz, recording 1600kHz wide passband, using Perseus software (http://microtelecom.it/perseus/software.html)</p>
Solar Eclipse 2017 recordings of the medium-wave AM broadcast band from Mt. Juliet, TN, U.S.A., Part 2
<p>recorded by Brandon Jordan, KM4PBQ</p> <p>location recorded: 36.198°N 86.518°W </p> <p>These data files are of the entire medium wave broadcast band (535-1705kHz) from 12:00:15 to 12:41:10 Central Daylight Time (17:00:15 to 17:41:10UTC), and from 12:54:32 to 14:55:21CDT (17:54:32 to 19:55:21UTC) recorded in Mt. Juliet, TN, USA. Data files are .ddc format, which is a renamed .wav file according to WiNRADiO's manual, in order to differentiate these files from audio files. The archived files here are .zip, with several .ddc files packaged together in each .zip file.</p> <p>The files here are the remainder of the data files found in "Solar Eclipse 2017 recordings of the medium-wave AM broadcast band from Mt. Juliet, TN, U.S.A., Part 1", as the total files recorded during the solar eclipse exceeded the Zenodo 50GB limit. Please see that dataset for software and for supporting documentation.</p> <p>Antenna: 4' x 33' rectangular loop oriented NW/SE along the eclipse path, using Wellbrook (https://www.wellbrook.uk.com/loopantennas/) ALA100 preamplifier </p> <p>Receiver: WiNRADiO WR-G33DDC (https://www.winradio.com/home/g33ddc.htm) using no front end attenuation, center frequency set at 1100kHz, recording 1250 kHz wide passband, using WinWR-G33DDC software</p>
Solar Eclipse 2017 recordings of the medium-wave AM broadcast band from Mt. Juliet, TN, U.S.A., Part 1
<p>recorded by Brandon Jordan, KM4PBQ</p> <p>These data files are of the entire medium wave broadcast band (535-1705kHz) from 12:00:15 to 12:41:10 Eastern Daylight Time, and from 12:54:32 to 14:55:21EDT recorded in Mt. Juliet, TN, USA. Data files are .ddc format, which is a renamed .wav file according to WiNRADiO's manual, in order to differentiate these files from audio files. The archived files here are .zip, with several .ddc files packaged together in each .zip file. As the total files recorded during the solar eclipse exceeded the Zenodo 50GB limit, the remainder of the dataset is found in "Solar Eclipse 2017 recordings of the medium-wave AM broadcast band from Mt. Juliet, TN, U.S.A., Part 2", . </p> <p>location recorded: 36.198°N 86.518°W </p> <p>Antenna: 4' x 33' rectangular loop oriented NW/SE along the eclipse path, using Wellbrook (https://www.wellbrook.uk.com/loopantennas/) ALA100 preamplifier </p> <p>Receiver: WiNRADiO WR-G33DDC (https://www.winradio.com/home/g33ddc.htm) using no front end attenuation, center frequency set at 1100kHz, recording 1250 kHz wide passband, using WinWR-G33DDC software</p> <p> </p> <p> </p>
Data from: Pollination on the dark side: acoustic monitoring reveals impacts of a total solar eclipse on flight behavior and activity schedule of foraging bees
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Data from: Aeroecology of a solar eclipse
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Data for Solar Eclipse 2006 March
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N2YCH CHU 7.850 MHz from April 8, 2024 Solar Eclipse
<p>Radio: <span>Elecraft KX2</span></p> <p><span>GPS-disciplined: No</span></p> <p><span>AGC: On</span></p> <p><span>Antenna: <span>I used a Chelegance MC-750 in a vertical configuration</span></span></p> <p><span><span>Lat/lon:</span></span></p> <table> <tbody> <tr> <td>44.24017632</td> <td>-73.29627406</td> </tr> </tbody> </table> <p>QRM: <span>I transmitted from another vertical on 20m FT8 nearby. I hope it did not affect the reception on 40meters</span></p> <p><span>Notes: <br><span>Sorry I didn't know to turn off the AGC...I could have but checking the radio it was on and in the fast mode. I did a POTA activation and was running FT8 on 20 meters nearby but I hope it was far enough away from 40 meters to not have an effect. If you see de-sensing every 15 seconds, that would be me. </span></span></p> <p><span><span><span>Doing this at a state park in Vermont, I ended up needing to explain what I was doing about 100 times...people certainly were accepting of the fact and even wowed when I explained I was participating in a propagation study of radio waves during the eclipse. I even had people help me carry my bags in and out of the park...thanks for letting me participate. I hope my data helps the cause. </span></span></span></p>
KE8UZF CHU 7.850 MHz from April 8, 2024 Solar Eclipse
<p>Radio: <span>Hermes14 (Apache Labs)</span></p> <p><span>GPS-disciplined: Yes</span></p> <p><span>AGC: Off</span></p> <p><span>Antenna: <span>SWL Antenna 13.8 m long 6 m high, axis approx n-s with active antenna tuner ~10dB</span></span></p> <p><span><span>Lat/Lon:</span></span></p> <table> <tbody> <tr> <td>43.0053</td> <td>-83.7066</td> </tr> </tbody> </table> <p>Notes: <span>04/12 UTC1500 FMT had lost its 1000Hz setting, and was reset to 1000Hz<br></span><span>upload difficulty, apparently fixed here by relaxing Netgear router settings</span></p>
VA3ROM CHU 3.330 MHz from April 8, 2024 Solar Eclipse
<p><em>Note:</em> VA3ROM collected data on multiple frequencies.</p> <p>Radio: <span>RX-888 MKII SDR (modified for GPSDO)</span></p> <p><span>GPS-disciplined: Yes</span></p> <p><span>AGC: Off</span></p> <p><span>Antenna: <span>Ground-mounted self-resonant 40m dipole with radials (works well down to 630m)</span></span></p> <p><span><span>Lat/lon: </span></span></p> <table> <tbody> <tr> <td>48.453</td> <td>-89.20946</td> </tr> </tbody> </table>
W3OA CHU 3.330 MHz from April 8, 2024 Solar Eclipse
<p><em>Note:</em> W3OA recorded on multiple frequencies. WE2S also contributed to this data collection. </p> <p>Radio: <span>Yaesu FTDX5000<br></span></p> <p><span>GPS-disciplined: No</span></p> <p><span>AGC: On</span></p> <p><span>Antenna: <span>Dipole, N-S</span></span></p> <p><span><span>Lat/lon:<br></span></span></p> <table> <tbody> <tr> <td>35.57851</td> <td>-80.9475</td> </tr> </tbody> </table> <p><span><span> </span></span></p>
W7GLF CHU 3.330 MHz from April 8, 2024 Solar Eclipse
<p>Radio: <span>Yaesu FT-817</span></p> <p><span>GPS-disciplined: Yes</span></p> <p><span>AGC: Off</span></p> <p><span><span>Antenna: Dipole North-South</span></span></p> <p><span><span>Lat/lon:<br></span></span></p> <table> <tbody> <tr> <td>47.711098</td> <td>-122.224053</td> </tr> </tbody> </table> <p>Notes: <span>Fun project</span></p> <p><span><span> </span></span></p>
21 August 2017 total solar eclipse penumbra
<p>Projection of the 19.3nm penumbra 300 km altitude.</p>
Solar Eclipse 2017 recordings of medium-wave AM broadcast band from State College, PA, U.S.A.
<p>recorded by Brett Saylor, W3SWL</p> <p>location recorded: 40° 47' 36" N, 77° 51'37" W</p> <p>These data files are recordings of the entire medium wave broadcast band (535-1705kHz) from 18:08:17UTC to 19:28:16UTC (at this location, the eclipse lasted from: 1714 UTC (start) - 1838 UTC (maximum) - 1956 UTC (end). ) Data files are .wav format, but the archived files are .zip, with one or two .wav files packaged together in each .zip file.</p> <p>Antenna: Corner-fed broadband unidirectional loop antenna, 36' long x 16' tall, using Wellbrook FLG-100 amplifier (https://www.wellbrook.uk.com/loopantennas/Components), and 1000 ohm termination , aimed at 180 degrees</p> <p>Receiver: Microtelecom Perseus SDR (http://microtelecom.it/perseus/) with no front end attenuation, center frequency set at 1000kHz, recording 1600kHz wide passband, using Perseus software.</p> <p> </p>
N6AJ CHU 14.669 MHz from April 8, 2024 Solar Eclipse
<p>Radio: <span>Icom 7300</span></p> <p><span>GPS-disciplined: Yes</span></p> <p><span>AGC: Off</span></p> <p><span>Antenna: <span>Steppir 2 element NE</span></span></p> <p><span><span>Lat/lon:</span></span></p> <table> <tbody> <tr> <td>35.39777</td> <td>-118.97564</td> </tr> </tbody> </table> <p>Notes: <span>Thanks for the opportunities. Due to storm electricity went off and had to reset</span></p>
VA3TWN CHU 7.850 MHz from April 8, 2024 Solar Eclipse
<p>Radio: <span>RTL-SDRv4</span></p> <p><span>GPS-disciplined: No</span></p> <p><span>AGC: Off</span></p> <p><span>Antenna: <span>HF20A, North-South</span></span></p> <p><span><span>Lat/lon:<br></span></span></p> <table> <tbody> <tr> <td>43.6847319</td> <td>79.3083075</td> </tr> </tbody> </table> <p><span><span>Notes: <span>Railway near the receiving station, but the trains run on diesel.</span></span></span></p> <p><span><span><span><span>Thank you for this activity. It's meaningful, even if I am not 100% sure I've done it right. It would be even more helpful if I could use rtl_tcp or other ways to record the reception. I was using gqrx to feed the voice to fldigi.<br><br>My original plan was IC-705 with fldigi, but I didn't get the right 12V DC. Pity.</span></span></span></span></p>
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Allen Brain Atlas
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