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Psychomotor exercise · ~5 min a run · free

Instrument Coordination

Fly three coupled gauges at once while a voice stream tests your ears.

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The flagship psychomotor format in on-site pilot selection puts three analog instruments in front of you at once: a direction indicator, an altimeter and an airspeed indicator, each with a green bug marking the commanded value. You hold all three on target while the axes fight you: the controls answer with deliberate inertia, holding altitude off target bleeds airspeed, and short bursts of turbulence are built to be impossible to counter. A voice stream of numbers and colour words runs in your headset the whole time, carrying its own response rule. The real systems run a long guided practice, up to three quarters of an hour, before a short scored phase; this exercise compresses that same structure into a guided walkthrough of each axis, then a scored phase of two and a half minutes.

About this test

What this test measures

This measures divided attention and multi-axis control, the defining combination of the flagship on-site psychomotor tests: three analog gauges (heading, altitude, speed) held on green target bugs at the same time, with deliberately coupled physics, control inertia, turbulence bursts that cannot be countered, and a concurrent voice stream carrying its own response rule. What it really scores is the quality of your instrument scan under load: whether every gauge keeps getting attention while your ears track the stream, or whether one runaway needle captures you and the rest drift.

How to improve your score

  • Build a fixed scan rhythm (heading, altitude, speed, voice) and keep it turning even while a needle misbehaves; the classic failure is staring at the worst gauge while the other two drift out of band.
  • After every altitude correction, glance straight at the airspeed gauge: the coupling means pitch work always costs or buys speed, and trimming it early is one tap instead of a rescue.
  • Do not fight the turbulence bursts mid-gust; wait them out and recover with one smooth input. Practise counting the voice runs out loud (one, two, press) until the rule needs rhythm rather than attention.

Good to know

  • Scan, do not stare

    The measured skill is the scan, not smooth flying. Set a rhythm: heading, altitude, speed, voice, and keep it turning even when one needle is misbehaving. The classic failure mode is locking onto the worst gauge while the other two drift quietly out of band; two mediocre gauges beat one perfect one and two abandoned ones.
  • The gusts are supposed to win

    When a TURB burst knocks a needle away, do not fight it mid-gust: the burst is faster than the controls and chasing it just leaves you deflected the other way when it ends. Wait it out, then recover with one smooth correction. Recovery speed is the skill; the deviation itself costs everyone.
  • Real version: joystick, touchscreen, headset

    On site this format runs on a dedicated workstation: a joystick whose inertia you can feel, touchscreen plus and minus buttons for speed, and the voice task through a headset. The browser version keeps the structure honest (coupled axes, uncounterable gusts, a live voice rule) while the hardware feel stays out of reach; the scan and divided attention you build here transfer.
  • Touch, mouse or keys: pick your split

    On a touchscreen, drag on the panel to fly and tap the buttons: the on-screen controls are the primary controls, not a fallback. With a mouse, small movements near the panel centre work best, with the speed and voice buttons on screen or on [ ] and J K. Avoid a laptop trackpad: candidates who sat the real assessments consistently recommend a mouse or a gamepad for continuous control.

Frequently asked questions

Why do the three axes interact?

Because they do in the real thing: candidates consistently report that pitch inputs cost airspeed on the real multi-axis instrument tests, so holding altitude sloppily quietly ruins the speed gauge. The exercise reproduces that coupling. The transferable habit is a scan rhythm: correct one gauge, then glance at the gauge it disturbs, rather than staring at whichever needle looks worst.

Why can I not counter the turbulence?

The gust bursts are deliberately faster than the controls can respond, which mirrors the documented behaviour of the real tests. The skill being measured is not a perfect line: it is how fast you notice the deviation and how cleanly you recover without over-controlling.

Is this exercise affiliated with any airline selection test or testing company?

No. This is an original SkyStudy exercise. The gauges, physics, voice stream and rules are all built by us; it is not affiliated with any test publisher, airline or assessment centre, and it does not predict the outcome of any real selection.

I cannot hear the voice stream. Can I still practise?

Yes. The stream uses your browser's built-in speech. If no speech engine is available, the words are shown as captions instead, with a reminder that the real format is audio only. You can also switch captions on alongside the audio while you learn the rule.

How is it scored?

Flying is 75 percent of the score: the share of the scored phase each gauge sat inside its tolerance band, averaged across the three. The voice task is the remaining 25 percent: correct responses divided by rule targets plus false alarms. The results screen shows every part separately.

What hardware does the real version use?

A dedicated station: a joystick with deliberate inertia for heading and altitude, touchscreen buttons for speed, and a headset for the voice task. A browser cannot replicate that hardware, so treat this as training for the scan and the divided attention, not the joystick feel. If you have a gamepad, plug it in: the stick, shoulder buttons and A/B buttons all work here.

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