2022.01.28 06:14 sebet_123 Double standard?
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2022.01.28 06:14 SecretChaosFolder Dichotomy of control it’s such a poor choice of words, really
This article reflects my thoughts about a word control in DOC. I always felt that a word control have a negative connotation because of some kind a modern obsession over controlling instead of just being. I can’t say that I control something fully, instead of my choices. In this beautiful universe where everything connected by Logos, there is no room for control, except in your own logos.
submitted by SecretChaosFolder to Stoicism [link] [comments]
2022.01.28 06:14 kimme Oljofoanddas nubbin eanemus vuoitu goassege
2022.01.28 06:14 ToddJustWorks Praise Todd Howard
2022.01.28 06:14 nix1grix King of Nations
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2022.01.28 06:14 Prichter23 20 Winners only for the GIVEAWAY. Read 👇
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2022.01.28 06:14 Prismarineplaza The multi-charger ENDLESS POWER
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2022.01.28 06:14 KayKass_24 Help Celebrating Vicki’s Life, organized by Kassidy Kayy
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2022.01.28 06:14 ToddJustWorks Praise Todd Howard
2022.01.28 06:14 TheGermanStockmodel I made a EP only using the Po-33 k.o
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2022.01.28 06:14 palapapa0201 The Bear and the Yoom
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2022.01.28 06:14 kimme «Koftepolitiet» čájehuvvo Finnmárkkus
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2022.01.28 06:14 papa20012021 How to deal with language barrier ?!
She  is from Hong Kong and I  am from Egypt. Obviously neither of us is a native speaker, but i still try my best to understand her when we call and it’s somehow working, we try to call and when we do we talk for hours but because of our busy schedule, college (I’m studying medicine and she is in nursing school), and time difference (6hours) we are not able to call especially when one of us has exams. And she kinda still struggles with basic grammar and takes too long to text back so texting isn’t a choice.
Have any of you been in our situation if yes then please share your experience and how you overcame that obstacle.
Thanks for reading this all the way through I really appreciate you all.
submitted by papa20012021 to LongDistance [link] [comments]
2022.01.28 06:14 singuei99 Milsim game on low end PC
So I've got a PC with 8GB of RAM, an I7 9700K and a 1660. My friend just bought a computer with 8GB of RAM, I5 10300H and a 1650. I've got Tarkov, Squad, Hell Let Loose and Arma 3 already and only playing Foxhole/ESO/ Day Z with him we both want some fresh air. I was thinking about Ready Or Not but my friend want something else too. Also if you got any good military RTS outside of the Eugen ones as we have them or any good coop or online games that we could play in the line of tactical FPS, MMORPG (I have WoW, ESO and New World) or any other great multiplayer experience like new survival game (already got Day Z, Rust and especially huge potential early acess games. I already have all the games on Game Base Ultimate and love early acess game that have a great potential. I would prefer games below like 25 CAD altought I can a bit more expensive. Thing is that I dont really have money to buy RAM right now, I have a M2 WD Black 500GB too to install but I've done it so it makes me a bit anxious and my computer is an Asus Strix Prebuild (GL10CS) and its pretty cramped so I'm waiting until my birthday to it with my uncle who has a company in informatics to teach me (I know I'm a noob always played PC, never build one or upgrade it myself). Also if any of you would be down to play to whatever game I could run it would be great. Also I ask myself if you have any advices or software to maximise my RAM will gaming because its always using alot even when not gaming.
Thank you very much and sorry again for the huge text, I've been searching alot on Steam and Google and told myself that Reddit might have ideas for me.
submitted by singuei99 to gaming [link] [comments]
2022.01.28 06:14 Throwback_559 Are these street legal in California?
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2022.01.28 06:14 Devildogmarketplace1 YouTube Marketing Strategy: How to Go Viral
Video marketing is one of the easiest ways to get highly targeted traffic, but you have to do it right. People love watching videos! They watched videos to be entertained, watch tutorials, research, music, and share their own video as well. That's why YouTube has become the #2 most used Search Engine on the internet and the #3 most visited website. You see, based on the statistics there are lots of people that are visiting the website which you can attract and drive them to your website traffic and leads to your business. The problem is that ranking on YouTube isn't as easy as it was back in the days. Plus, on top of that, there are tons and tons of different marketing strategies out there online. Many of these work and many of them have faded away. Understanding what Google wants and making sure what you do looks as natural as possible is the key strategy here. It has also become an extremely powerful tool for businesses to increase awareness of their brand, drive more traffic to their company sites, and reach a broad audience around the world. If your company isn't already leveraging the power of YouTube there are some massive benefits that you're missing out on. Michael has a result-driven YouTube Marketing approach that uses Laser-targeting that increases your exposure. So, Start successful marketing and expand YouTube reach. Devil Dog Marketplace is the top-rated YouTube advertising freelancer that provides affordable YouTube promotion services. Start Today by contacting Michael for a free audit of your Youtube channel.
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2022.01.28 06:14 iliveinacaves Problem with engagement.
I am a European national with an Arabic heritage. I have been in a relationship with a Moroccan city girl for a few years now. She is kind, simple, and honestly was always happy with just me.
We plan to get engaged very soon, and all my family and her family are going to come to it. My wish is that we do something simple for the engagement i.e ring exchange, music, cake. But she tells me it doesn't work like this in Morocco.
She made a list for me of what is needed after I asked her and she told me she removed many things to make it easier for me as I am only working part time.
However, the list includes bags, make up, perfume, etc but also jewelry in the 1,500 euro range including the engagement ring. I told her at this time it is not wise to do this and I promised her we can later.
But she started to feel so bad. Honestly, I believe she is affected by social expectation and pressure. She told me she will feel and look as if she doesn't have value to her visiting family. She also told me that these gifts are normal in Moroccan engagements, and many people receive even more.
Whilst I understand how dfou3 works, I thought she would be more understanding because I can't do this at this time for various reasons. It doesn't mean we still shouldn't get engaged.
I just want your honest opinion as to whether her requests are reasonable according to the customs and traditions you have there, and if you have any advice or suggestions for us to make some kind of reasonable compromise.
submitted by iliveinacaves to Morocco [link] [comments]
2022.01.28 06:14 Schnoodle-98 I went to the local Panera Bread
I walked Inside greeted by the scent of fresh brewed coffee, greeted by the sight of delicious pastries, and finally greeted by the sight of a warm smile.
“Hi! Welcome to Panera. What can I get started for you?” Said the bubbly cashier. I peered over the menu pondering to myself what is a you pick two? What would I get? It had been so long since my last visit. None of the things I remembered liking were offered. My moment to ponder was ended by the sweet sound of the cashier.
“Sir would you like some help with the menu?” The cashier leaned forward, and said in a warm tone.
“everything is great here.”
She leaned back, and gave me a wink? Alright that was something. My stomach began to grumble alright, alright.
“Can I get a you pick…” but before I finished she interrupted.
“With a Broccoli..” She was muttering to herself. What is she doing?
“Excuse me I … I was not done ordering.”
“Oh…but you were.”
“What” I was confused how did she, how did this cashier have any idea if I was done.
“Bread bowl.” She finished typing in the order. Her eyes slowly looked up to meet mine. She knew what I wanted. She knew exactly what I decided
“How did you know what I wanted? Look lady, maybe you’ve worked here for awhile, but you can’t possibly know that those items are what I want!”.
“I … I’ve may I have something else!”
“We know what you want.” She said in that same sweet tone.
“You can’t know what I want.”
The familiar warmth began to vanish in those eyes of hers appeared a silent hatred. I regretted questioning her further. Her eyes did not move away from mine as she began to speak.
“I know all because I’m Mother Bread a deity served by millions, I should know what her most loyal customers desire.” Ok this bitch is crazy, but with my stomach beginning to grow louder. I conceded to her I just really wanted to forget about this encounter.
“Ok how much do I owe you?”
“Your eternal servitude!” She said with the faintest hint of a smile concealed behind her mask.
“No for real.” I began to chuckle a bit out of frustration. I didn’t have time for this the sound of my stomach was deafening.
“Everything” that warmth that invited me in was no longer there. The store was no longer there. A cold, dark hand wrapped itself around my mind. A vision, the tall antler adorned goddess welcomed me with warmth. She sat upon a throne made of many bones. In the center of the expansive room sat a cauldron, no a bowl of bread filled to the brim with writhing worms.
“I am Mother Bread, bringer of warmth, and a giving god. All those invited in serve through to the end of time.” The figure strode towards me I could hear a sickening snap of bones as she crushed the skulls beneath her. The ground itself trembled with each step she took. A trail of blood followed her the blood rose in droplets. I watched as the blood droplets rose up through an unending void.
“You have been chosen to serve.”
“You are one of many.” Her sick, twisted mouth covered in blood formed a smile. There was no warmth. There was only the dreadful cold that emanated though out her throne room. In that instance it was made clear to me. I did not give in. I did not allow the choice to be made for me I rebelled. However a mantra was echoing through my mind Mother Bread was a giving god, you do not chose, you are given the gift. That sickly smile never faded. The cold began to envelope me, but she radiated warmth.
“Dear child you do not order you receive.”
“Your foolishness must be punished. Only I provide your salvation.”
I could feel the sting of the cold. Mother Bread with a crown of antlers, Mother Bread with the pelt of a wolf, and she with blood smeared all over. She beckoned me, and I … I couldn’t resist. She who strode upon bone embraced me. The warmth was intoxicating.
I looked up I peered into the eyes of a young woman, she was right, and I obey. Through the glass barrier I said.
“Hi! What can I get started for you?”
submitted by Schnoodle-98 to nosleep [link] [comments]
2022.01.28 06:14 Branmuffin127 Just lost my 9 win streak in Ranked to Exodia FTK.
2022.01.28 06:14 SpookSkywatcher German Space Surveillance Resources
Radar Space Surveillance Resources:
Germany, through its "Deutsches Zentrum für Luft- und Raumfahrt" (DLR) German Aerospace Center, is responsible for hosting the European Union Space Surveillance and Tracking Service (EU SST) database and generating an EU SST Catalogue of space objects. While a critical role, as of July 2020, Germany also has a Weltraumkommando der Bundeswehr (WRKdoBw) Space Command managing its own formidable space surveillance resources.
Telescopes and Camera Space Surveillance Resources:
The Fraunhofer Institute for High Frequency Physics and Radar Techniques (Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik, FHR), is the developer of two space surveillance radars, TIRA (Tracking and Imaging Radar) and GESTRA (German Experimental Space Surveillance and Tracking Radar) for the German Aerospace Center (Deutsches Zentrum für Luft- und Raumfahrt; DLR). TIRA operates at two transmission frequencies, 1.333 GHz L-band and 16.7 GHz Ku-band. It has a huge 34 m aperture, 240 ton, gimbaled Cassegrain dish antenna that would look quite at home on the Death Star, and yet is capable of swinging 24 deg/sec in azimuth and 6 deg/sec in elevation, an agility necessary for tracking objects in LEO. The narrow-band coherent pulsed (30 Hz PRF) L-band radar is used for precise tracking (3 m positional accuracy at 1000 km) for orbit determination and is capable of detecting a 2 cm sphere at 1000 km. It can operate on its own or provide the tracking required by the wideband Ku-band Inverse Synthetic Aperture Radar (ISAR) portion which is capable of better than 20 cm resolution imagery of LEO objects. . A future upgrade is to increase the imaging radar frequency for higher resolution. Sample TIRA ISAR images of the Tiangong-1 space station shortly before reentry are at https://www.nasaspaceflight.com/wp-content/uploads/2018/04/2018-04-01-173152.jpg and https://cbsnews1.cbsistatic.com/hub/i/2018/03/31/03fef570-f0ab-4816-9da7-3df1b2f163bb/tiangong-ap-18088394762534.jpg . GESTRA ( https://directory.eoportal.org/web/eoportal/satellite-missions/g/gestra ) is a quasi-monostatic (transmitter and receiver are in separate 18 m x 4 m x 4 m transportable shelters at least 100 m apart to avoid receiver saturation) pulsed phased array L-band (~1.3 GHz) radar for detection and tracking of objects between 300 and 3000 km in altitude. The modular 256 active element (each module with an individual patch antenna) transmit and receive arrays are mounted on round 2.8 m dia. 3-axis platforms mechanically steered for efficient operation in any region of the sky and rotated for preferred polarization in linear polarization mode. Transmit array pulse peak power is 256 kW, with a 64 kW mean. Arrays have 39 dB antenna gain with pencil beam 3dB beamwidth of 6.5 deg. at the highest frequency. Multiple receiver beams may be combined to cover the transmitter illuminated volume of space. Electronic multi-beam forming and steering (+/- 45 deg in both azimuth and elevation) provide high beam agility (areas of sky scanned in milliseconds) and operational mode flexibility. These modes include search (rapidly sweeping the beam to form a "space fence" detection plane), track (though orbital location cueing is required for initial acquisition), and track-while-scan (beams can be dedicated to track individual objects while the remainder continue scanning). System angular accuracy is 0.6 deg. or better and range accuracy 8 m or better. A second separate receiver is in development for the European Space Surveillance and Tracking (EUSST) project, apparently to create a long baseline coherent network for higher resolution. The system, which is now on Schmidtenhöhe army training grounds in Koblenz, is remotely controlled by the German Space Situational Awareness Command (GSSAC) in Uedem, Germany.
Lidar Space Surveillance Resources:
In July 2020 the DLR began construction of the Multi-Spectral Large Aperture Receiver Telescope (MS-LART) in a controlled access industrial research park in Empfingen, Germany. MS-LART is designed for LEO space surveillance and is an f/6, 1.75 m aperture, Ritchey-Chrétien Nasmyth design with four Nasmyth focus instrumentation ports ( https://www.astrosysteme.com/en-us/products/asa-az1750/ ). A separate 400 mm f/2.4 astrograph ( https://www.astrosysteme.com/en-us/products/asa-h400/ ) is mounted piggyback to document the observed area of sky with a wide field of view. MS-LART has two modes of operation. In passive mode it is strictly a space surveillance telescope observing satellites by reflected sunlight in the visible (including spectrographically) and near-IR. In active mode it is part of a lidar system discussed below. In 2021 the observatory was completed and the telescope installed. Observations are to begin in 2022. ( https://conference.sdo.esoc.esa.int/proceedings/sdc8/pape79/SDC8-paper79.pdf ). The DLR's Autonomous Passive Optical Staring Of LEO Flying Objects (APPARILLO, a word meaning "contraption") system is a proof of concept demonstrator of a high performance, compact, weatherproof. autonomously operating, comparatively low cost commercial-off-the-shelf (COTS) component based, LEO satellite detection and tracking camera ( https://link.springer.com/article/10.1007/s12567-021-00380-6 ). It is designed to autonomously detect LEO objects and calculate their track angles across the sensor. These are combined with sensor line of sight from star field astrometric calibration and sensor geodetic coordinates from GPS to provide equatorial coordinates in Tracking Data Message (TDM) format ( https://public.ccsds.org/Lists/CCSDS%205030P11/503x0p11.pdf ) accurate enough for orbit calculations to cue SLR systems. It is a precursor to future DLR "Stare and Chase" camera systems that will automatically provide initial orbit determination (IOD) predictions to networked tracking and SLR systems for object detection, tracking, and ranging during a single orbit. No information was provided on future uses for APPARILLO, nor a timeline for the follow-on German "Stare and Chase" systems. APPARILLO has a 10 deg FOV and low noise astronomical camera CCD sensor capable of continuously monitoring the night sky for LEO objects. In Dec. 2020 tests it demonstrated detection of 36 objects/hour at twilight, with detection efficiency nearly 100% for object cross sections above 2.25 sq. meters, decreasing to 50% for cross sections between 1 and 2 sq. meters, and having a detectability limit of 0.1 sq. meter. The camera used is the FLI Proline PL09000 with thermoelectrically cooled On Semi KAF-09000 3056 × 3056 pixels monochrome CCD sensor ( http://www.flicamera.com/spec_sheets/archive/PL09000.pdf ). The shutter is mechanical with over 50 ms actuation times and the sensor readout rate is 8 MHz through a USB 2.0 interface, both factors limiting minimum exposure time and maximum frame rate. The lens is a common Canon EF 200 mm f/2 telephoto with 100 mm aperture and 10.4 deg. minimum FOV. The camera is mounted in a weatherproof enclosure capable of rotation to 90 deg. below or above the horizon. No azimuth rotation capability was provided (other than rotating the entire system), and during testing the camera was aimed straight up. An Adafruit Ultimate GPS receiver ( https://www.adafruit.com/product/746 ) and Arduino microcontroller board provides GPS UTC time tagging of camera frames with 100 microsecond precision. A Boltwood Cloud Sensor II (https://diffractionlimited.com/product/boltwood-cloud-sensor-ii/ ) determines if the sky is sufficiently clear of clouds, there is no precipitation, and there is an adequate level of darkness. that valid observations can be made. If that is true and the time of day is correct for twilight or night observations, the camera will be rotated from the downward stowed position towards the sky and enabled to acquire images. If weather conditions change for the worse or it is time for sunrise, imaging will cease and the camera head will again be pointed down in the safe position.
submitted by SpookSkywatcher to ufo [link] [comments]
Lidar surveillance of orbiting space objects falls into two categories, the purely Satellite Laser Ranging (SLR) stations which require a target carrying retro-reflectors, and Space Debris Laser Ranging (SDLR) stations which have sufficient laser power and optical receiver sensitivity to range on a satellite or debris fragment surface return alone. In either case, cueing from other systems is required for initial target acquisition. Ranging of LEO targets to within millimeters is possible. SLR-only stations are probably not useful for UAP tracking, but are listed below for completeness. The previously discussed MS-LART can operate in the near IR as a satellite / space debris laser ranging (SLR / SDLR) system using an eye-safe laser wavelength above 1,400 nm. Other specifications on the laser have not been found, but an Erbium-YAG laser at 1600 nm is likely. Alongside the MS-LART observatory at Empfingen, is the DLR Surveillance, Tracking and Ranging (STAR-C) transportable LEO SLR system housed in a 20 ft. long shipping container with sliding roof ( https://www.hou.usra.edu/meetings/orbitaldebris2019/orbital2019papepdf/6203.pdf ). As described in 2019, the laser was diode pumped Nd:YAG, lasing at 1064 nm, with 50 mJ/pulse 10 ns wide pulses at 1 kHz PRF for an average 50 W output power. It was mounted separate from the transmitting telescope, with the output conveyed to the 2" aperture scope through a Coudé path in the mount. It was planned to increase the transmitter aperture to 10 inches, which would lower the power density of the expanded beam (likely for safety concerns). The laser beam is a potential hazard to aviation, so air traffic was monitored during operation using a local thermal sky imager and air traffic control data. Because It was desired to operate the system entirely remotely in populated areas with aircraft possibly overhead, DLR is likely moving to an eye-safe laser Erbium-YAG laser at 1600 nm. The ranging receiver is a 17" aperture Ritchey-Chrétien design telescope with an optical bandpass filter to reject ambient light and fiber-coupled InGaAs-SPAD (single-photon avalanche diode) detector feeding the received photon time-of-flight measurement system for range determination. The International Laser Ranging Service (ILRS) provided precision satellite ranging for geodesy and conjunction (collision) probability assessment for approximately 100 satellites in 2019 ( https://ilrs.gsfc.nasa.gov/index.html ). Germany hosts two ILRS station sites actively fulfilling satellite ranging requests. Each has an associated tracking camera. The Bundesamt für Kartographie und Geodäsie (BKG) Federal Agency for Cartography and Geodesy runs Geodetic Observatory Wettzell, in Koetzting, Germany, which hosts two SLR systems, designated "WLRS" and "SOSW". The WLRS laser transmitter and receiver share a 0.75m aperturea Coude afocal telescope with a polarizing transmit/receive switch. In normal SLR operation the AZ/EL mount will slew at up to 10 deg/s in azimuth and 5 deg/s in elevation. The CMOS tracking camera has a 0.05 deg FOV and can detect sources of magnitude 14 brightness. The Nd:YAG laser can apparently operate with or without an amplifier section. With amplification the operating wavelength is 1064 nm with 10 ps wide pulses of 100 mJ energy at 20 Hz PRF. This can be frequency doubled to 532 nm with 50 mJ pulse energy. Without amplification the 1064 nm output is 10 ps wide pulses of 1.2 mJ energy at 500 Hz PRF. This can be frequency doubled to 532 nm with 0.2 mJ pulse energy. None of these modes is eye safe and air traffic must be monitored for potential hazard. WLRS is capable of ranging the moon (Apollo retro-reflector arrays) as well as satellites. There are four possible laser receivers. The one for 1064 nm is a single-photon avalanche diode (SPAD). Those for 532 nm include a SPAD, a photomultiplier tube (PMT), and an avalanche photodiode (APD). The telescope incorporates a narrowband optical filter to permit daylight ranging. Wetzell SOSW system's receiving Cassegrain telescope has a 0.5 m aperture and the piggyback transmitting refractor telescope has a 0.15 m aperture. In normal SLR operation the AZ/EL mount will slew at up to 10 deg/s in azimuth and 5 deg/s in elevation. The CCD tracking camera has a ).05 deg FOV and can detect sources of magnitude 10 brightness. The Ti:Sap laser operating wavelength is 849.8 nm with 40 ps wide pulses of 1.5 mJ energy at 1,000 Hz PRF. The output is not eye safe, and air traffic is monitored for potential hazard. There are two possible 849.8 nm laser receivers, both APDs operated in single photon detection mode. The receiving telescope incorporates a narrowband optical filter to permit daylight ranging. GeoForschungsZentrum (GFZ, German Research Centre for Geosciences) Potsdam runs the "GFZLAS3" station (aka "Potsdam 3") located in Potsdam, Germany. The Coude-Cassegrain receiving telescope has a 0.44 m aperture and the piggyback transmitter is a 0.15 m aperture refractor telescope. In normal SLR operation the AZ/EL mount will slew at up to 10 deg/s in both azimuth and elevation. The thermoelectrically cooled CCD tracking camera can detect sources of magnitude 12 brightness. There are three lasers, all operating frequency doubled to 532 nm in the green. The first is Nd:YAG with 50 ps wide pulses of 10 mJ energy at 20 Hz PRF. The second is Nd:YVO with 10 ps wide pulses of 0.4 mJ energy at 2,000 Hz PRF. The third is also Nd:YVO with 10 ps wide pulses of 0.7 mJ energy at 2,000 Hz PRF. None are eye safe, and air traffic is monitored for potential hazard. There are 10 possible receivers, all operating at 532 nm. They include five PMTs and five SPADS. The receiving telescope incorporates a narrowband (0.4 nm) optical filter to permit daylight ranging. DLR has operated experimental SLR systems at Uhlandshöhe Forschungsobservatorium (UFO), the Uhlandshöhe Research Observatory in Stuttgart, Germany, since at least 2012. The current SLR operates at a 100 kHz effective pulse rate with 50 micro-Joule energy per 10 ns wide pulse ( https://link.springer.com/article/10.1007/s12567-019-00247-x ). It has provided ranging to cooperative satellites in 20,000 km high orbits to 1 cm precision after averaging thousands of returns over two minutes of observation time. While averaging can provide greater range precision than a single pulse observation, it prevents determination of fast spin or tumble rates, which require high single pulse precision. The laser transmitter is a 1062 nm wavelength Jenoptik fibre laser operating at 8 W average output power with 80 micro-Joule/pulse at the laser head. The laser is connected to the transmitting optics on the telescope mount via a simple multi-mode fiberoptic cable rather than a complex mirror arrangement or affixing the laser itself to the telescope mount. This convenience had a price in a large laser beam divergence, resulting in lower power on target. It is recognized that performance might be improved by replacing the multi-mode fiber with single-mode fiber providing better optical performance. The laser pulse was kept long (10 ns) to reduce the peak power applied to the fiberoptic cable faces to avoid damage. This long pulse width reduced single pulse range precision to 60 cm, but the high PRF allowed an effective precision of 1 cm after averaging. The high PRF, however, prevented per-pulse delayed gating of the receiver detector to avoid picking up atmospheric backscatter from the transmitter pulses. Instead, the transmitter is triggered at 200 Hz to produce 50% duty cycle bursts of 200 kHz pulses (thus the system's effective 100 kHz PRF) while the detector is blanked. The detector is un-blanked after the pulses exit the atmosphere in order to capture the return signal. The Uhlandshöhe Research Observatory SLR system was a designated ILRS Engineering Station for testing new SLR technologies and techniques. Operation was discontinued in 2021 and it does not appear in the current ILRS list of either engineering or active stations. DLR designed the MiniSLR Compact Satellite Laser Ranging Station as a ruggedized, low cost, low footprint, low labor requirement prototype to expand the overburdened ILRS to areas where stations are scarce or non-existent, including Africa, North and South America, and at polar latitudes ( https://www.researchgate.net/publication/328901302_MiniSLR_A_fully_automated_miniature_satellite_laser_ranging_ground_station ). The MiniSLR employs a direct drive mount holding both the 20 cm Newton receiving and the diode pumped Nd:YAG laser providing 200 microJoule 1064 nm pulses at 30 kHz PRF. The low power requires 20mm x 20mm light weight retro-reflectors on the LEO objects being tracked, making the system unsuited for tracking debris - or UAPs. The laser emissions are claimed to not be an aviation hazard due to being (near) IR. (It is true that 1064 nm is invisible to humans, so no distracting glare, but the wavelength can pass through glass and the cornea to damage the retina if sufficiently powerful). The optics mount sits atop a 1.8m x 1.2m x 1.6 m weatherproof air-conditioned metal container holding all control and data collection, processing, and reporting electronics. The system can be operated either fully autonomously or under remote control. Processed satellite range data is automatically reported to a designated website. Performance testing in 2019 was successful in ranging to multiple targets, but the telescope mount proved a problem. An upgrade to a new mount and higher power 150 micro Joule pulse energy, 75 kHz PRF, 400 ps pulse width laser was underway in 2019, with renewed testing planned for 2021.
2022.01.28 06:14 kimme 24.288 ođđa koronanjoammuma
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2022.01.28 06:14 InfiniteArrival First Ranger ever
My 2021 XLT arrives next week. This is my first pickup and my first Ford. Originally I wanted a Maverick but after seeing how sold out they are the Ranger caught my eye. Anything I should know about the Rangers? Any must have add ons? Also I'm planning on getting a bed cover so if anyone can reccomend a good one I'd appreciate it.
submitted by InfiniteArrival to fordranger [link] [comments]
2022.01.28 06:14 racemax2020 help please
so hello, i wanted to ask is there any way to fix fps drop in valorant ,i use a propper gaming laptop,hp pavillion 15 with a ryzen 5 and a gtx 1650ti, i play on the highest battery settings,i have no background apps (except the essentials) ,i play valorant on the lowest graphics,no skins are used is there any fix?
submitted by racemax2020 to ValorantTechSupport [link] [comments]
2022.01.28 06:14 Environmental-Disk82 Ako mogu nesta da pitam
Prije par trenutaka bili su likovi sa nekom velikom kamerom sa zutim postamentom Pitao sam ih ko su i kazu da su iz Bh telecoma,i da su dosli da snjime rupu koja je bila iskopana prije nekoliko godina. Samo su se premjestali u bašti i slikavali. Pa da pitam jesu li vama ikada tako slicni dolazili ili je neka sprdnja
submitted by Environmental-Disk82 to bih [link] [comments]
2022.01.28 06:14 Saladatron2 Me when I see ssj4’s or anything GT
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