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cosmoship1. avi

Взлёт космического корабля! =) Полетели!
00:16 0 просмотров:43 Правовая информация, копирайт
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Orion Spacecraft & SLS: Exploration Systems Division Quarterly Report #3 2013 NASA
Orion Spacecraft & SLS: Exploration Systems Division Quarterly Report #3 2013 NASA
13:16 4.8 Скачать просмотров:35313

more at

3rd quarterly report from NASA’s Exploration Systems Division on the Orion spacecraft and the Space Launch System. Released on August 22, 2013.

Public domain film from NASA.

Orion Multi-Purpose Crew Vehicle (MPCV) is a planned beyond-low-Earth-orbit manned spacecraft that is being built by Lockheed Martin for NASA and Astrium for European Space Agency for crewed missions to the Moon, asteroids and Mars. It is planned to be launched by the Space Launch System. Each Orion spacecraft is projected to carry a crew of up to four or more astronauts. It is also planned as a backup for ISS cargo and crew delivery.

The MPCV was announced by NASA on 24 May 2011, aided by designs and tests already completed for a spacecraft of the cancelled Constellation program, development for which began in 2005 as the Crew Exploration Vehicle. It was formerly going to be launched by the tested-but-cancelled Ares I launch vehicle.

The MPCV’s debut unmanned multi-hour test flight, known as Exploration Flight Test 1 (EFT-1), is scheduled for a launch aboard a Delta IV Heavy rocket in 2014. The first manned mission is expected to take place after 2020. In January 2013, ESA and NASA announced that the Orion Service Module will be built by European space company Astrium for European Space Agency...

The Orion Crew and Service Module (CSM) stack consists of two main parts: a conical Crew Module (CM), and a cylindrical Service Module (SM) holding the spacecraft’s propulsion system and expendable supplies. Both are based substantially on the Apollo Command and Service Modules (Apollo CSM) flown between 1967 and 1975, but include advances derived from the space shuttle program. «Going with known technology and known solutions lowers the risk, » according to Neil Woodward, director of the integration office in the Exploration Systems Mission Directorate.

The MPCV resembles its Apollo-era predecessors, but its technology and capability are more advanced. It is designed to support long-duration deep space missions of up to six months. The spacecraft’s life support, propulsion, thermal protection and avionics systems are designed to be upgradeable as new technologies become available.

The MPCV spacecraft includes both crew and service modules, and a spacecraft adaptor.

The MPCV’s crew module is larger than Apollo’s and can support more crew members for short or long-duration spaceflight missions. The service module fuels and propels the spacecraft as well as storing oxygen and water for astronauts. The service module’s structure is also being designed to provide locations to mount scientific experiments and cargo...

The Space Launch System, or SLS, is a United States Space Shuttle-derived heavy launch vehicle being designed by NASA. It follows the cancellation of the Constellation Program, and is to replace the retired Space Shuttle. The NASA Authorization Act of 2010 envisions the transformation of the Ares I and Ares V vehicle designs into a single launch vehicle usable for both crew and cargo.

The SLS launch vehicle is to be upgraded over time with more powerful versions. Its initial Block I version, without an upper stage, is to lift a payload of 70 metric tons to orbit. The final Block II version with an integrated upper Earth Departure Stage is to, depending on the configuration, have a payload lift capability of 130 metric tons to low earth orbit, 12 metric tons above that of Saturn V, which would make the SLS the most capable heavy lift vehicle ever built.

SLS is to be capable of lifting astronauts and hardware to near-Earth destinations such as asteroids, the Moon, Mars, and most of the Earth’s Lagrangian points. SLS may also support trips to the International Space Station, if necessary. The SLS Program is integrated with NASA’s Orion Program, providing a four person multipurpose crew vehicle. SLS will use the ground operations and launch facilities at NASA’s Kennedy Space Center, Florida...

The core stage of the SLS is common to all vehicle configurations, essentially consisting of a modified Space Shuttle External Tank with the aft section adapted to accept the rocket’s Main Propulsion System (MPS) and the top converted to host an interstage structure. It will be fabricated at the Michoud Assembly Facility. The stage will utilize varying numbers and versions of the RS-25 engine depending on the configuration to be used:

Block 0: ET core stage (not stretched) with three RS-25D engines. Initial planning baseline, from Shuttle components.
Block I: Stretched core stage with four RS-25D engines.
Block 1A, IB: Stretched core stage with four RS-25D/E engines.
Block II: Stretched core stage with four RS-25E engines and two advanced rocket boosters...

Did NASA find Ancient Spaceships on Mars?
Did NASA find Ancient Spaceships on Mars?
06:44 3.1 Скачать просмотров:344851

OK OK I get it, my voice is monotonous and disturbing. I thought it was smooth but the lack of enunciation has some of you recoilling and complaining. My future videos are using music instead of narration.
In this video there are three possible signs of ancient spaceships on Mars and tracks as if they were plowing the ground!

Spaceship Footprint
13° 20’ 18.32» N 115° 35’ 20.34» W

Spaceship Crashsite
19° 24’ 31.5» N 147° 54’ 39.54» E

Ice Tunnel
81° 20’ 52.34» N 91° 29’ 27.63» E

You might have to look carefully but that first spaceship footprint IS a depression and not an object. The shadow is INSIDE the depression and the sun is to the left.
I disabled comments because I got tired of closed minds insulting me.
Nevermind the text at the bottom «ESA/DLR/FU Berlin (G. Neukum)» which is always there when you look at Mars.
These videos were made using Google Earth Pro.

Building a Homemade Spacecraft
Building a Homemade Spacecraft
13:44 4.9 Скачать просмотров:263219

Anyone with some brains and lots of courage can build their own space rocket using everyday, off-the-shelf products. We recently flew to Denmark to meet the founders of Copenhagen Suborbitals, a non-profit open-source D.I.Y. space endeavor.

Read more here:

Watch more episodes of Spaced Out here:

SPACED OUT — produced by


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cosmoship. avi
cosmoship. avi
00:16 0 Скачать просмотров:62

Взлёт космического корабля! =) Полетели!

Stephen Hawking — Rocket to the Future
Stephen Hawking — Rocket to the Future
05:56 4.8 Скачать просмотров:961304

Stephen Hawking examines how we may some day, travel to the future.

Into The Universe With Stephen Hawking — Time Travel

This video belongs to Discovery Communications and is being used for educational purposes only

2010 KiR 3D
2010 KiR 3D
01:11 0 Скачать просмотров:38

(c) 2010 — KiR iN da DeSiGn =)

Launch of Manned Chinese Shenzhou-10 Spacecraft
Launch of Manned Chinese Shenzhou-10 Spacecraft
13:40 4.7 Скачать просмотров:126857

China’s 5th manned space flight launched today, Shenzhou-10, on a Long March 2F rocket. Liftoff occurred at 09:38 UTC on June 11th 2013 from the Jiuquan Satellite Launch Center. Shenzhou 10 will approach and dock with the Tiangong-1 Docking Target which launched in September 2011. They will be the last crew to dock with Tiangong-1 before it is de-orbited, Shenzhou-9 docked back in June 2012.

The crew of Shenzhou 10 are commander Nie Haisheng, Zhang Xiaoguang and second Chinese female astronaut Wang Yaping, they are scheduled to stay in orbit just over two weeks.

Ф-35Б «Лайтнинг» II на корабле «Уосп» ВМС США
Ф-35Б «Лайтнинг» II на корабле «Уосп» ВМС США
03:05 4.3 Скачать просмотров:18483

F-35 «Лайтнинг II» истребитель-бомбардировщик пятого поколения.
Радиолокационная станция с активной фазированной антенной решёткой, электронно-оптическая система с распределенной апертурой, состоящая из ИК датчиков, расположенных на фюзеляже c диапазоном обзора 360 градусов.
Система позволяет:
Выявлять групповые пуски баллистических ракет на дальности до 1300 км, сопровождать данные цели и выдавать целеуказание по каждой из них в автоматическом режиме.
Обнаруживать иные наземные и воздушные цели
Осуществлять навигацию при полете днем/ночью
Предупреждать о ракетной атаке самолёта
Обнаруживать точки пуска ракеты, позиции работающей зенитной артиллерии
Производить пуск ракеты воздух-воздух по цели, летящей за самолётом.
Всенаправленная инфракрасная камера высокого разрешения, предназначенная для наблюдения и целеуказания. Она обеспечивает захват и сопровождения любых наземных, надводных и воздушных целей. Полностью пассивная, она способна обнаруживать и сопровождать цели в автоматическом режиме и на большом расстоянии, а также сообщать о лазерном облучении самолёта.
Станция индивидуальных помех (РЭП)
Нашлемная система целеуказания и индикации, возможно управление взглядом и поворотом головы.
Широкоформатный сенсорный дисплей отображения информации, также возможно управление голосом.
Шлем пилота:
позволяет пилотам «видеть через кабину» самолёта, снабжая его подсказками, необходимыми для полета, навигации и ведения боя. Возможности видения в инфракрасном диапазоне. Шлем позволяет автоматически переключаться между видеорежимами. Шлем является своеобразным командным центром: высокоточное целеуказание всего бортового оружия завязано на движения головы и глаз летчика

На данный момент произведено 63 единицы различных модификаций.
Самолеты поступили в учебный центр по подготовки пилотов, в центры для тестирования и в том числе приняты на вооружение КМП США, ВМС Великобритании.

Для США будет построено 2443 самолета, они заменят:
все F-16, F/A-18 Хорнет (Супер Хорнет останется в строю) AV-8B Харриер.
ВВС F-35A 1763 единицы, ВМС F-35C 260 единиц, КМП F-35B 340 единиц и 80 F-35C

Для стран партнеров НАТО: Великобритания 138, Италия 90, Турция 100, Австралия 100, Нидерланды 85, Канада 65, Норвегия 52, Дания 30. В том числе для ВВС Израиля и Японии.

ЭПР F-35 в сравнении с другими самолетами:
МиГ-29 — 5 м²
Су-30 — 4 м²
Рафаль — 2 м²
Су-35 — 2 м²
Eurofighter — 0.5-1 м²
ПАК-ФА — 0.5-1 м² (на вооружении нет)
F-117 Nighthawk — 0.025 м² (снят с вооружения)
F-35 Lightning II — 0.0013 м²
F-22 Raptor — 0.0001 м².

Kinetic Void: Building A Space Ship
Kinetic Void: Building A Space Ship
44:29 4.4 Скачать просмотров:62306

Kinetic Void is a pre-alpha game that has the potential, in my eyes, to not be the next Minecraft, but a good game nonetheless. In the current pre-alpha version, the player can chose from a variety of parts and build a space ship. Populate it with «components/modules» and then perform some limited space combat and flight.

In this episode I explain the basics behind building a ship in game, a few key-bindings that players will need to know (as they are unlisted in the game — but you can find them various places: Steam community, google, etc...) As well as take space ship I build for a short flight and discover an «oddity’ in the game that throws a wrench into the gears of how my brain thought the game worked.