Navigator
Graviti, hukum Kepler, unsur orbit, kelajuan, melarikan diri, persamaan roket dan bagaimana pesawat angkasa terbang antara dunia.
NASA/JPL/Space Science Institute
-
Graviti Newton
- Newton's gravity · 12 min Selesai
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 min Selesai
-
Hukum Kepler
- Kepler's laws · 14 min Selesai
Three rules found from careful observations in the early 1600s still describe every orbit, from moons to exoplanets.
- Kepler's laws · 14 min Selesai
-
Unsur
- Orbital elements · 14 min Selesai
Six numbers pin down any orbit in space: its size, shape, tilt, orientation and where the body is on it.
- Orbital elements · 14 min Selesai
-
Kelajuan orbit: persamaan vis-viva
- Orbital speed: the vis-viva equation · 12 min Selesai
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 min Selesai
-
Kelajuan melarikan diri
- Escape velocity · 12 min Selesai
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 min Selesai
-
Kenapa orbit adalah jatuh
- Why an orbit is a fall · 10 min Selesai
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 min Selesai
-
Mencapai orbit: putaran graviti
- Reaching orbit · 12 min Selesai
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 min Selesai
-
Persamaan roket dan delta-v
- The rocket equation and delta-v · 12 min Selesai
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 min Selesai
-
Hohmann transfers
- Hohmann transfers: changing orbits · 12 min Selesai
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 min Selesai
-
Lancarkan tetingkap
- Launch windows: the road to Mars · 12 min Selesai
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 min Selesai
-
Pemasangan orbit: sedang ditangkap
- Orbital insertion: getting captured · 12 min Selesai
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 min Selesai
-
Graviti membantu
- Gravity assists: the free slingshot · 12 min Selesai
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 min Selesai
-
Titik Lagrange
- Lagrange points: balance in the sky · 11 min Selesai
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 min Selesai
-
Rendezvous dan pendaratan
- Rendezvous: catching the space station · 11 min Selesai
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 min Selesai
-
Datang balik: masuk semula
- Coming home: reentry · 11 min Selesai
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 min Selesai
-
Plot Porkchop
Akan datang
-
Asteroid dan komet
Akan datang
Alat dan pengajaran hanya menggunakan model yang dipermudah untuk pembelajaran. Ia tidak boleh digunakan untuk navigasi, pelancaran misi atau sebarang keputusan operasi. Sijil adalah percuma dan tidak diakui. Baca pengecualian kandungan pendidikan