Из-за всем известных событий очень многие потеряли работу.
Для поиска вакансий вполне можно использовать паблики в telegram. Вот несколько которые мне известны:
https://t.me/django_jobs
https://t.me/javascript_jobs
https://t.me/workzavr
https://t.me/workoo
https://t.me/Workesss
@g_jobbot
➡️ Чем шире о себе заявите, тем больше шансов найти нужный контакт. Поэтому предлагаю айтишникам и художникам бесплатно разместить на моём канале @pythonotes информацию о вас.
Формат сообщения можно сделать примерно следующий:
_______________________________
Имя Фамилия
Специализация
О себе
- Долго думаю, быстро делаю.
Кем хочу работать
- Разработчик мобильных приложений
Локация
- Удалённо, возможен переезд в ГородНейм
Знаю языки программирования
- JSON
- CSS
- HTML
Хорошо владею софтом
- Maya. Ротоскопинг, трекинг
- Nuke. Персонажная анимация
- 3DsMax. Композитинг и кленап
Где работал
- Microsoft, админ лифта
- Yandex, доставка пончиков
- Disney, протирка шариков от мышей
Контакты
- Телеграм: @username
- Почта: [email protected]
- Полное резюме (ссылка на GoogleDoc/LinkedIn/PDF)
_______________________________
Картинки не надо, смайлы без фанатизма.
Текст присылайте в этот временный канал, где будем обсуждать все вопросы:
▶️@pn_work
🌼 Если найдутся желающие, вакансии тоже могу запостить
📅 Предложение актуально как минимум до лета 2022г.
Если будет хоть один пост, уже не зря старался)
📌@pythonotes
#offtop
🌎 Lurking in deep space, “dark matter” makes up about 27% of the universe, yet it remains invisible. Scientists infer its existence by observing gravity’s effects—like stars swirling faster than visible matter alone predicts. Its true nature is still unknown, but it outweighs all regular matter combined. ✨
#space⚡#astrophysics⚡#mystery
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🌎 Mysterious dark matter makes up about 27% of the universe, but it does not emit or absorb light, making it invisible. Scientists detect dark matter only through its gravitational effects on galaxies and galaxy clusters. The leading candidates for dark matter particles are called WIMPs—Weakly Interacting Massive Particles. ✨
#space⚡#universe⚡#astrophysics
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🌎 Gamma-ray bursts are the most energetic explosions in the universe, releasing in seconds as much energy as the Sun emits over its entire 10-billion-year lifespan. They are detected by satellites as brief flashes of gamma radiation, and are thought to result from collapsing massive stars or merging neutron stars. ✨
#space⚡#gamma⚡#astrophysics
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🪐 In the spiral galaxy NGC 4993, scientists observed a gamma-ray burst, GRB 170817A, that arrived just 1.7 seconds after gravitational waves from the merger of two neutron stars—ultra-dense stellar remnants. This remarkable event marked the first time both gravitational waves and a gamma-ray burst were detected from the same source, giving astronomers an unprecedented, multi-messenger view of a cosmic collision. ✨
#gamma⚡#astrophysics⚡#neutronstars⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space
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🪐 In 2022, the Event Horizon Telescope captured the first radio image of the supermassive black hole at the center of our galaxy, Sagittarius A*, revealing a glowing ring of hot gas swirling around the event horizon—the point beyond which nothing can escape. This image confirmed decades of theory about black holes and showed that matter falling in forms a bright, lopsided halo just outside the black hole’s shadow, unlocking new clues about how these cosmic giants really behave. ✨
#blackholes⚡#SagittariusA⚡#astrophysics⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space
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🪐 The star HE 0107-5240, found in the constellation Phoenix, is one of the most metal-poor stars ever discovered, meaning it contains almost no elements heavier than hydrogen and helium. This rare "primordial" star likely formed from the material left over after the very first stars died, making it an ancient relic that helps scientists study the universe's earliest generations of stars. ✨
#unusualstars⚡#primordialstars⚡#astrophysics⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space
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🪐 The spiral galaxy Messier 83 has hosted more recorded gamma-ray bursts than almost any spiral galaxy nearby, becoming a hotspot for these mysterious explosions. Gamma-ray bursts are split-second flashes of the universe’s most energetic light, and their frequent appearance in Messier 83 helps scientists study how massive stars can end their lives in extreme, spectacular fashion. ✨
#Messier83⚡#gamma⚡#astrophysics⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space
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🪐 The pulsar PSR J0437−4715, located about 500 light-years away in the constellation Pictor, spins nearly 174 times per second and is famous for its near-perfect "cosmic clock" precision. This ultra-stable pulsar allows astronomers to test the fundamental laws of physics and even hunt for elusive gravitational waves by tracking the tiny variations in its radio pulses over many years. ✨
#pulsars⚡#Pictor⚡#astrophysics⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space
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What If The Universe DID NOT Start With The Big Bang?
@PBS Space Time
👉 Head to https://brilliant.org/spacetime/ for a 30-day free trial + 20% off your annual subscription
#YouTube#liked#Black_Holes#Black_Hole#Black_Hole_Physics#Space#Outer_Space#Physics#Astrophysics#Quantum_Mechanics#Space_Physics#PBS#Space_Time#Time#PBS_Space_Time#Matt_O_Dowd#Einstein#Einsteinian_Physics#General_Relativity#Special_Relativity#Dark_Energy#Dark_Matter#The_Universe#Math#Science_Fiction#Calculus#Maths#Holographic_Universe#Holographic_Principle#Rare_Earth#Anthropic_Principle#Weak_Anthropic_Principle#Strong_Anthropic_Principle