Angeli Bukley:
Artificial Gravity - Taschenbuch
2014, ISBN: 1489997741
[EAN: 9781489997746], Neubuch, [SC: 0.0], [PU: Springer New York], CARDIOVASCULAR DECONDITIONING; EFFECTS OF WEIGHTLESSNESS; IAC LIFE SCIENCES AWARD; PHYSIOLOGY IN SPACE; SHORT-RADIUS CEN… Mehr…
[EAN: 9781489997746], Neubuch, [SC: 0.0], [PU: Springer New York], CARDIOVASCULAR DECONDITIONING; EFFECTS OF WEIGHTLESSNESS; IAC LIFE SCIENCES AWARD; PHYSIOLOGY IN SPACE; SHORT-RADIUS CENTRIFUGE; SPACE MISSION PLANNING; ENVIRONMENT; HISTORY; SCIENCES; PHYSIOLOGY; SAFETY; SCIENCE; EXPLORATION, Druck auf Anfrage Neuware - Printed after ordering - William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity is an old concept, having gotten its start in the late in the 19th century when Konstantin Tsiolkovsky, considered by many to be the father of the Russian space program, realized that the human body might not respond well to the free fall of orbital space flight. To solve this problem, he proposed that space stations be rotated to create centripetal accelerations that might provide inertial loading similar to terrestrial gravitational loading. Einstein later showed in his equivalence principle that acceleration is indeed indistinguishable from gravity. Subsequently, other individuals of note, including scientists like Werner von Braun as well as artists like Arthur C. Clarke and Stanley Kubrick, devised elaborate solutions for spinning vehicles to provide 'artificial gravity' that would offset the untoward physiological consequences of spaceflight. By 1959, concerns about the then-unknown human responses to spaceflight drove NASA to consider the necessity of incorporating artificial gravity in its earliest human space vehicles. Of course, owing in part to the relatively short durations of the planned missions, artificial gravity was not used in the early NASA programs., Books<
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Angeli Bukley:
Artificial Gravity - Taschenbuch
2014, ISBN: 1489997741
[EAN: 9781489997746], Neubuch, [PU: Springer New York], CARDIOVASCULAR DECONDITIONING; EFFECTS OF WEIGHTLESSNESS; IAC LIFE SCIENCES AWARD; PHYSIOLOGY IN SPACE; SHORT-RADIUS CENTRIFUGE; SP… Mehr…
[EAN: 9781489997746], Neubuch, [PU: Springer New York], CARDIOVASCULAR DECONDITIONING; EFFECTS OF WEIGHTLESSNESS; IAC LIFE SCIENCES AWARD; PHYSIOLOGY IN SPACE; SHORT-RADIUS CENTRIFUGE; SPACE MISSION PLANNING; ENVIRONMENT; HISTORY; SCIENCES; PHYSIOLOGY; SAFETY; SCIENCE; EXPLORATION, Druck auf Anfrage Neuware - Printed after ordering - William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity is an old concept, having gotten its start in the late in the 19th century when Konstantin Tsiolkovsky, considered by many to be the father of the Russian space program, realized that the human body might not respond well to the free fall of orbital space flight. To solve this problem, he proposed that space stations be rotated to create centripetal accelerations that might provide inertial loading similar to terrestrial gravitational loading. Einstein later showed in his equivalence principle that acceleration is indeed indistinguishable from gravity. Subsequently, other individuals of note, including scientists like Werner von Braun as well as artists like Arthur C. Clarke and Stanley Kubrick, devised elaborate solutions for spinning vehicles to provide 'artificial gravity' that would offset the untoward physiological consequences of spaceflight. By 1959, concerns about the then-unknown human responses to spaceflight drove NASA to consider the necessity of incorporating artificial gravity in its earliest human space vehicles. Of course, owing in part to the relatively short durations of the planned missions, artificial gravity was not used in the early NASA programs., Books<
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Herausgegeben:Clément, Gilles; Bukley, Angeli:
Artificial Gravity - Taschenbuch
2014, ISBN: 9781489997746
[ED: Softcover], [PU: Springer / Springer New York / Springer, Berlin], William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity… Mehr…
[ED: Softcover], [PU: Springer / Springer New York / Springer, Berlin], William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity is an old concept, having gotten its start in the late in the 19th century when Konstantin Tsiolkovsky, considered by many to be the father of the Russian space program, realized that the human body might not respond well to the free fall of orbital space flight. To solve this problem, he proposed that space stations be rotated to create centripetal accelerations that might provide inertial loading similar to terrestrial gravitational loading. Einstein later showed in his equivalence principle that acceleration is indeed indistinguishable from gravity. Subsequently, other individuals of note, including scientists like Werner von Braun as well as artists like Arthur C. Clarke and Stanley Kubrick, devised elaborate solutions for spinning vehicles to provide "artificial gravity" that would offset the untoward physiological consequences of spaceflight. By 1959, concerns about the then-unknown human responses to spaceflight drove NASA to consider the necessity of incorporating artificial gravity in its earliest human space vehicles. Of course, owing in part to the relatively short durations of the planned missions, artificial gravity was not used in the early NASA programs.
2007. 2014. xxi, 364 S. XXI, 364 p. 235 mm
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Artificial Gravity Gilles Clïment Editor - neues Buch
ISBN: 9781489997746
William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity is an old concept, having gotten its start in the late in the 19th cent… Mehr…
William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity is an old concept, having gotten its start in the late in the 19th century when Konstantin Tsiolkovsky, considered by many to be the father of the Russian space program, realized that the human body might not respond well to the free fall of orbital space flight. To solve this problem, he proposed that space stations be rotated to create centripetal accelerations that might provide inertial loading similar to terrestrial gravitational loading. Einstein later showed in his equivalence principle that acceleration is indeed indistinguishable from gravity. Subsequently, other individuals of note, including scientists like Werner von Braun as well as artists like Arthur C. Clarke and Stanley Kubrick, devised elaborate solutions for spinning vehicles to provide artificial gravity that would offset the untoward physiological consequences of spaceflight. By 1959, concerns about the then-unknown human responses to spaceflight drove NASA to consider the necessity of incorporating artificial gravity in its earliest human space vehicles. Of course, owing in part to the relatively short durations of the planned missions, artificial gravity was not used in the early NASA programs. New Textbooks>Trade Paperback>Science>Engineering>Mech Engr, Springer New York Core >1 >T<
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(*) Derzeit vergriffen bedeutet, dass dieser Titel momentan auf keiner der angeschlossenen Plattform verfügbar ist.
Artificial Gravity Gilles Clïment Editor - neues Buch
ISBN: 9781489997746
William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity is an old concept, having gotten its start in the late in the 19th cent… Mehr…
William H. Paloski, Ph. D. Human Adaptation and Countermeasures Office NASA Johnson Space Center Artificial gravity is an old concept, having gotten its start in the late in the 19th century when Konstantin Tsiolkovsky, considered by many to be the father of the Russian space program, realized that the human body might not respond well to the free fall of orbital space flight. To solve this problem, he proposed that space stations be rotated to create centripetal accelerations that might provide inertial loading similar to terrestrial gravitational loading. Einstein later showed in his equivalence principle that acceleration is indeed indistinguishable from gravity. Subsequently, other individuals of note, including scientists like Werner von Braun as well as artists like Arthur C. Clarke and Stanley Kubrick, devised elaborate solutions for spinning vehicles to provide artificial gravity that would offset the untoward physiological consequences of spaceflight. By 1959, concerns about the then-unknown human responses to spaceflight drove NASA to consider the necessity of incorporating artificial gravity in its earliest human space vehicles. Of course, owing in part to the relatively short durations of the planned missions, artificial gravity was not used in the early NASA programs. New Textbooks>Trade Paperback>Science>Engineering>Mech Engr, Springer New York Core >1 >T<
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