កម្មវិធីរុករក
ແຮງດຶງດູດ, ກົດເກນ Kepler, ອົງປະກອບວົງໂຄຈອນ, ຄວາມໄວ, ການຫຼົບໜີ, समीकरण ລູກສອນໄຟ ແລະ ວິທີການທີ່ຍານອະວະກາດເດີນທາງລະຫວ່າງໂລກ.
NASA/JPL/Space Science Institute
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ແຮງດຶງດູດຂອງນີວຕັນ
- Newton's gravity · 12 នាទី ສຳເລັດ
One law explains falling apples, the Moon's orbit and the path of every planet. Fire Newton's cannon and find out how.
- Newton's gravity · 12 នាទី ສຳເລັດ
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ກົດເກນຂອງ Kepler
- Kepler's laws · 14 នាទី ສຳເລັດ
Three rules found from careful observations in the early 1600s still describe every orbit, from moons to exoplanets.
- Kepler's laws · 14 នាទី ສຳເລັດ
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ធាតុວົງໂຄຈອນ
- Orbital elements · 14 នាទី ສຳເລັດ
Six numbers pin down any orbit in space: its size, shape, tilt, orientation and where the body is on it.
- Orbital elements · 14 នាទី ສຳເລັດ
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ໄວພາບວົງໂຄຈອນ: ຂໍ້ສົມມຸດຕິຖານ vis- viva
- Orbital speed: the vis-viva equation · 12 នាទី ສຳເລັດ
One short equation gives the speed of anything in orbit at any point, if you know how far it is and the size of its orbit.
- Orbital speed: the vis-viva equation · 12 នាទី ສຳເລັດ
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ល្បឿນລົບ
- Escape velocity · 12 នាទី ສຳເລັດ
How fast do you need to go to leave a world for good? And why rockets do not actually need to reach it at the surface.
- Escape velocity · 12 នាទី ສຳເລັດ
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ເຫດຜົນທີ່ວ່າເປັນຫຍັງວົງໂຄຈອນຈຶ່ງຕົກ
- Why an orbit is a fall · 10 នាទី ສຳເລັດ
Astronauts float not because there is no gravity up there, but because they are falling all the time, and missing.
- Why an orbit is a fall · 10 នាទី ສຳເລັດ
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ບັນລຸວົງໂຄຈອນ: ການປ່ຽນແຮງດຶງດູດ
- Reaching orbit · 12 នាទី ສຳເລັດ
Why rockets go up for only a few seconds, then spend ten minutes going sideways: the gravity turn, staging and orbital insertion.
- Reaching orbit · 12 នាទី ສຳເລັດ
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ຂໍ້ສົມມຸດຕິຖານຂອງລູກສອນໄຟ ແລະ delta-v
- The rocket equation and delta-v · 12 នាទី ສຳເລັດ
Why rockets are mostly fuel, why they come in stages, and the one equation behind every mission's budget.
- The rocket equation and delta-v · 12 នាទី ສຳເລັດ
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ສົ່ງຕໍ່
- Hohmann transfers: changing orbits · 12 នាទី ສຳເລັດ
To go higher you speed up, and then you arrive slower. The two-burn manoeuvre that moves satellites from low orbit to geostationary orbit.
- Hohmann transfers: changing orbits · 12 នាទី ສຳເລັດ
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ເປີດបង្អួច
- Launch windows: the road to Mars · 12 នាទី ສຳເລັດ
You cannot aim at Mars, only at where Mars will be in eight months. Why Mars missions leave every 26 months, all at once.
- Launch windows: the road to Mars · 12 នាទី ສຳເລັດ
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ເຂົ້າສູ່ວົງໂຄຈອນ: ຖືກຈັບ
- Orbital insertion: getting captured · 12 នាទី ສຳເລັດ
Arriving at a planet is the most dangerous minute of a mission: one burn decides whether you stay or fly past forever.
- Orbital insertion: getting captured · 12 នាទី ສຳເລັດ
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ຊ່ວຍເຫຼືອຄວາມດຶງດູດ
- Gravity assists: the free slingshot · 12 នាទី ສຳເລັດ
How Voyager, Cassini and New Horizons stole speed from planets, and why it never breaks the conservation of energy.
- Gravity assists: the free slingshot · 12 នាទី ສຳເລັດ
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ຈຸດລາກຣຽນ
- Lagrange points: balance in the sky · 11 នាទី ສຳເລັດ
Five places around every pair of worlds where a spacecraft can ride along for free, and why the James Webb Space Telescope lives at one of them.
- Lagrange points: balance in the sky · 11 នាទី ສຳເລັດ
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ພົບກັນ ແລະ ດັອກ
- Rendezvous: catching the space station · 11 នាទី ສຳເລັດ
To catch something ahead of you in orbit, you drop lower and go slower-looking but faster. The counter-intuitive art of meeting in space.
- Rendezvous: catching the space station · 11 នាទី ສຳເລັດ
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ເຂົ້າມາເຮືອນ: ການເຂົ້າສູ່ລະບົບ
- Coming home: reentry · 11 នាទី ສຳເລັດ
A small push slows a spacecraft by a hundred metres per second, and the air takes care of the other 7.8 kilometres per second, as a fireball.
- Coming home: reentry · 11 នាទី ສຳເລັດ
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ແຜນທີ່ Porkchop
ໃກ້ຈະມາເຖິງ
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ດາວເຄາະນ້ອຍ ແລະ ດາວພະຫັດ
ໃກ້ຈະມາເຖິງ
ເຄື່ອງມື ແລະ ບົດຮຽນໃຊ້ແບບງ່າຍໆເພື່ອການຮຽນຮູ້ເທົ່ານັ້ນ. ພວກມັນບໍ່ຄວນຖືກໃຊ້ ສຳ ລັບການ ນຳ ທາງ, ການວາງແຜນພາລະກິດ ຫຼື ການຕັດສິນໃຈໃນການປະຕິບັດງານໃດໆ. ໃບຢັ້ງຢືນແມ່ນຟຣີແລະບໍ່ມີໃບອະນຸຍາດ. ອ່ານຂໍ້ຍົກເວັ້ນຄວາມຮັບຜິດຊອບຂອງເນື້ອໃນການສຶກສາ