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Voskhod 2
Voskhod 2 (russian: Восход-2, , ''Sunrise-2'') was a Soviet crewed space mission in March 1965. The Vostok-based Voskhod 3KD spacecraft with two crew members on board, Pavel Belyayev and Alexei Leonov, was equipped with an inflatable airlock. It established another milestone in space exploration when Alexei Leonov became the first person to leave the spacecraft in a specialized spacesuit to conduct a 12-minute spacewalk. Crew Backup crew Reserve crew Mission parameters * Mass: * Apogee: * Perigee: * Inclination: 64.8° * Period: 90.9 min Space walk * Leonov – EVA – 18 March 1965 ** 08:28:13 GMT: The Voskhod 2 airlock is depressurized by Leonov. ** 08:32:54 GMT: Leonov opens the Voskhod 2 airlock hatch. ** 08:34:51 GMT: EVA start – Leonov leaves airlock. ** 08:47:00 GMT: EVA end – Leonov reenters airlock. ** 08:48:40 GMT: Hatch on the airlock is closed and secured by Leonov. ** 08:51:54 GMT: Leonov begins to repressurize the airlock. ** Duration: 12 ...
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Alexei Leonov
Alexei Arkhipovich Leonov. (30 May 1934 – 11 October 2019) was a Soviet and Russian cosmonaut, Air Force major general, writer, and artist. On 18 March 1965, he became the first person to conduct a spacewalk, exiting the capsule during the Voskhod 2 mission for 12 minutes and 9 seconds. He was also selected to be the first Soviet person to land on the Moon although the project was cancelled. In July 1975, Leonov commanded the Soyuz capsule in the Apollo-Soyuz mission, which docked in space for two days with an American Apollo capsule. Early life and military service Leonov was born on 30 May 1934 in Listvyanka, West Siberian Krai, Russian SFSR. His grandfather had been forced to relocate to Siberia for his role in the 1905 Russian Revolution. Alexei was the eighth of nine surviving children born to Yevdokia and Arkhip. His father was an electrician and miner. In 1936, his father was arrested and declared an "enemy of the people". Leonov wrote in his autobiography ...
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Yevgeny Khrunov
Yevgeny Vasilyevich Khrunov (; 10 September 1933 – 20 May 2000) was a Soviet cosmonaut who flew on the Soyuz 5/Soyuz 4 mission. Early life Yevgeny Khrunov was born on 10 September 1933 to Vasily Yegorevich and Agrafena Nikolayevna. Nicknamed “Zhenya” he had five brothers and two sisters. Khrunov's family was a farming family. Khrunov married Svetlana Sokolyuk and had a son on 13 July 1959. He was born in Prudy, Tula Oblast, Russian SFSR. Education and career Khrunov began officially being schooled in 1941. Khrunov was initially interested in pursuing farming in studies. His interest in flying would soon follow after he watched the planes during wartime. Once he graduated from primary school he enrolled at Kashira Agricultural Secondary School on scholarship and would graduate from there in 1952. His teachers regularly spoke highly of him and considered him a hard working student. In 1952 Khrunov was also drafted into the Soviet Army where he would follow his interests ...
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Space Suit
A space suit or spacesuit is a garment worn to keep a human alive in the harsh environment of outer space, vacuum and temperature extremes. Space suits are often worn inside spacecraft as a safety precaution in case of loss of cabin pressure, and are necessary for extravehicular activity (EVA), work done outside spacecraft. Space suits have been worn for such work in Earth orbit, on the surface of the Moon, and en route back to Earth from the Moon. Modern space suits augment the basic pressure garment with a complex system of equipment and environmental systems designed to keep the wearer comfortable, and to minimize the effort required to bend the limbs, resisting a soft pressure garment's natural tendency to stiffen against the vacuum. A self-contained oxygen supply and environmental control system is frequently employed to allow complete freedom of movement, independent of the spacecraft. Three types of space suits exist for different purposes: IVA (intravehicular activity) ...
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Airlock
An airlock, air-lock or air lock, often abbreviated to just lock, is a compartment with doors which can be sealed against pressure which permits the passage of people and objects between environments of differing pressure or atmospheric composition while minimizing the change of pressure in the adjoining spaces and mixing of environments. The lock consists of a relatively small chamber with two airtight doors in series which do not open simultaneously. An airlock may be used for passage between environments of different gases or different pressures, or both, to minimize pressure loss or prevent the gases from mixing. An airlock may also be used underwater to allow passage between an air environment in a pressure vessel and the water environment outside, in which case the airlock can contain air or water. This is called a floodable airlock or an underwater airlock, and is used to prevent water from entering a submersible vessel or an underwater habitat. Air-locks are used in ...
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Payload Fairing
A payload fairing is a nose cone used to protect a spacecraft payload against the impact of dynamic pressure and aerodynamic heating during launch through an atmosphere. An additional function on some flights is to maintain the cleanroom environment for precision instruments. Once outside the atmosphere the fairing is jettisoned, exposing the payload to outer space. The standard payload fairing is typically a cone-cylinder combination, due to aerodynamic considerations, although other specialized fairings are in use. The type of fairing which separates into two halves upon jettisoning is called a clamshell fairing by way of analogy to the bifurcating shell of a clam. In some cases the fairing may enclose both the payload and the upper stage of the rocket, such as on Atlas V and Proton M. If the payload is attached both to the booster's core structures and to the fairing, the payload may still be affected by the fairing's bending loads, as well as inertia loads due to vibrations ...
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Launch Escape System
A launch escape system (LES) or launch abort system (LAS) is a crew-safety system connected to a space capsule that can be used to quickly separate the capsule from its launch vehicle in case of an emergency requiring the abort of the launch, such as an impending explosion. The LES is typically controlled by a combination of automatic rocket failure detection, and a manual activation for the crew commander's use. The LES may be used while the launch vehicle is still on the launch pad, or during its ascent. Such systems are usually of two types: *A solid-fueled rocket, mounted above the capsule on a tower, which delivers a relatively large thrust for a brief period of time to send the capsule a safe distance away from the launch vehicle, at which point the capsule's parachute recovery system can be used for a safe landing on ground or water. The tower and rocket are jettisoned from the space vehicle in a normal flight at the point where it is either no longer needed, or cannot be e ...
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Voskhod Spacecraft Diagram
Voskhod (russian: Восход: sunrise) may refer to: *Voskhod programme, the Soviet programme of human spaceflight *Voskhod (spacecraft), a spacecraft used in the Voskhod programme *Voskhod (rocket), a rocket that was used to launch Voskhod spacecraft *Voskhod, Russia, several rural localities in Russia *Voskhod, Yalta Municipality, an urban-type settlement in Crimea, disputed between Ukraine and Russia *Voskhod motorcycle, a brand of motorcycle *Voskhod (hydrofoil), a class of hydrofoil boat built in Ukraine *Voskhod (magazine), a periodical published in 1881–1906 in the Russian Empire See also *Sunrise Sunrise (or sunup) is the moment when the upper rim of the Sun appears on the horizon in the morning. The term can also refer to the entire process of the solar disk crossing the horizon and its accompanying atmospheric effects. Terminology Al ...
{{Disambiguation, geo ...
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Voskhod 2 Deployed
Voskhod (russian: Восход: sunrise) may refer to: *Voskhod programme, the Soviet programme of human spaceflight *Voskhod (spacecraft), a spacecraft used in the Voskhod programme *Voskhod (rocket), a rocket that was used to launch Voskhod spacecraft * Voskhod, Russia, several rural localities in Russia * Voskhod, Yalta Municipality, an urban-type settlement in Crimea, disputed between Ukraine and Russia * Voskhod motorcycle, a brand of motorcycle *Voskhod (hydrofoil), a class of hydrofoil boat built in Ukraine *Voskhod (magazine), a periodical published in 1881–1906 in the Russian Empire See also *Sunrise Sunrise (or sunup) is the moment when the upper rim of the Sun appears on the horizon in the morning. The term can also refer to the entire process of the solar disk crossing the horizon and its accompanying atmospheric effects. Terminology Al ...
{{Disambiguation, geo ...
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Orbital Period
The orbital period (also revolution period) is the amount of time a given astronomical object takes to complete one orbit around another object. In astronomy, it usually applies to planets or asteroids orbiting the Sun, moons orbiting planets, exoplanets orbiting other stars, or binary stars. For celestial objects in general, the sidereal period ( sidereal year) is referred to by the orbital period, determined by a 360° revolution of one body around its primary, e.g. Earth around the Sun, relative to the fixed stars projected in the sky. Orbital periods can be defined in several ways. The tropical period is more particularly about the position of the parent star. It is the basis for the solar year, and respectively the calendar year. The synodic period incorporates not only the orbital relation to the parent star, but also to other celestial objects, making it not a mere different approach to the orbit of an object around its parent, but a period of orbital relations ...
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Inclination
Orbital inclination measures the tilt of an object's orbit around a celestial body. It is expressed as the angle between a Plane of reference, reference plane and the orbital plane or Axis of rotation, axis of direction of the orbiting object. For a satellite orbiting the Earth directly above the Equator, the plane of the satellite's orbit is the same as the Earth's equatorial plane, and the satellite's orbital inclination is 0°. The general case for a circular orbit is that it is tilted, spending half an orbit over the northern hemisphere and half over the southern. If the orbit swung between 20° north latitude and 20° south latitude, then its orbital inclination would be 20°. Orbits The inclination is one of the six orbital elements describing the shape and orientation of a celestial orbit. It is the angle between the orbital plane and the plane of reference, normally stated in degree (angle), degrees. For a satellite orbiting a planet, the plane of reference is usually ...
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Perigee
An apsis (; ) is the farthest or nearest point in the orbit of a planetary body about its primary body. For example, the apsides of the Earth are called the aphelion and perihelion. General description There are two apsides in any elliptic orbit. The name for each apsis is created from the prefixes ''ap-'', ''apo-'' (), or ''peri-'' (), each referring to the farthest and closest point to the primary body the affixing necessary suffix that describes the primary body in the orbit. In this case, the suffix for Earth is ''-gee'', so the apsides' names are ''apogee'' and ''perigee''. For the Sun, its suffix is ''-helion'', so the names are ''aphelion'' and ''perihelion''. According to Newton's laws of motion, all periodic orbits are ellipses. The barycenter of the two bodies may lie well within the bigger body—e.g., the Earth–Moon barycenter is about 75% of the way from Earth's center to its surface. If, compared to the larger mass, the smaller mass is negligible (e.g., f ...
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Apogee
An apsis (; ) is the farthest or nearest point in the orbit of a planetary body about its primary body. For example, the apsides of the Earth are called the aphelion and perihelion. General description There are two apsides in any elliptic orbit. The name for each apsis is created from the prefixes ''ap-'', ''apo-'' (), or ''peri-'' (), each referring to the farthest and closest point to the primary body the affixing necessary suffix that describes the primary body in the orbit. In this case, the suffix for Earth is ''-gee'', so the apsides' names are ''apogee'' and ''perigee''. For the Sun, its suffix is ''-helion'', so the names are ''aphelion'' and ''perihelion''. According to Newton's laws of motion, all periodic orbits are ellipses. The barycenter of the two bodies may lie well within the bigger body—e.g., the Earth–Moon barycenter is about 75% of the way from Earth's center to its surface. If, compared to the larger mass, the smaller mass is negligible (e.g., f ...
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