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  2. ʻOumuamua - Wikipedia

    en.wikipedia.org/wiki/ʻOumuamua

    About 1.3 million years ago the object may have passed within a distance of 0.16 parsecs (0.52 light-years) to the nearby star TYC 4742-1027-1, but its velocity is too high to have originated from that star system, and it probably just passed through the system's Oort cloud at a relative speed of about 15 km/s (34,000 mph; 54,000 km/h).

  3. List of Solar System objects by greatest aphelion - Wikipedia

    en.wikipedia.org/wiki/List_of_Solar_System...

    'Oumuamua had an incoming V inf of 26.5 kilometres per second (59,000 mph), but due to its low perihelion distance of only 0.255 au, it had an eccentricity of 1.200. However, Borisov's V inf was only slightly higher, at 32.3 km/s (72,000 mph), but due to its higher perihelion distance of ~2.003 au, its eccentricity was a comparably higher 3.340.

  4. Project Lyra - Wikipedia

    en.wikipedia.org/wiki/Project_Lyra

    However, subsequent investigations revealed further opportunities for missions to 'Oumuamua will be possible, using a Solar Oberth at 6 solar radii (4.2 × 10 ^ 6 km; 2.6 × 10 ^ 6 mi), [12] the soonest being in 2030/2033 – the choice of year depending on whether the trajectory exploits a 3 year leveraging maneuver or not.

  5. Interstellar object - Wikipedia

    en.wikipedia.org/wiki/Interstellar_object

    [89] [90] One option is using first a Jupiter flyby followed by a close solar flyby at 3 solar radii (2.1 × 10 ^ 6 km; 1.3 × 10 ^ 6 mi) in order to take advantage of the Oberth effect. [91] Different mission durations and their velocity requirements were explored with respect to the launch date, assuming direct impulsive transfer to the ...

  6. Space travel under constant acceleration - Wikipedia

    en.wikipedia.org/wiki/Space_travel_under...

    At a constant acceleration of 1 g, a rocket could travel the diameter of our galaxy in about 12 years ship time, and about 113,000 years planetary time. If the last half of the trip involves deceleration at 1 g, the trip would take about 24 years. If the trip is merely to the nearest star, with deceleration the last half of the way, it would ...

  7. Robert Weryk - Wikipedia

    en.wikipedia.org/wiki/Robert_Weryk

    [1] Robert J. Weryk (born 1981) is a Canadian physicist and astronomer. He currently works at the University of Hawaiʻi at Mānoa, where he discovered the first known interstellar object, ʻOumuamua. [2] [3] [4] He has also published numerous articles on meteors and other astronomical topics. [5]

  8. Speed of sound - Wikipedia

    en.wikipedia.org/wiki/Speed_of_sound

    More simply, the speed of sound is how fast vibrations travel. At 20 °C (68 °F), the speed of sound in air, is about 343 m/s (1,125 ft/s; 1,235 km/h; 767 mph; 667 kn), or 1 km in 2.91 s or one mile in 4.69 s. It depends strongly on temperature as well as the medium through which a sound wave is propagating.

  9. MPH - Wikipedia

    en.wikipedia.org/wiki/MPH

    MPH or mph is a common abbreviation of miles per hour, a measurement of speed. MPH may also refer to: MPH, a 2014–2015 comic book series by Mark Millar and Duncan Fegredo; Make Poverty History, campaign to end poverty in Africa; Manlius Pebble Hill School, DeWitt, New York, US; Martinair's airline code; Master of Public Health, degree