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{{w|Lunch|Lunch}} is listed as if it was another topic of the TTSLTSWBD, but it probably just means that after discussing airships, the conference will take a break to eat lunch, as many [[1530:_Keyboard_Mash|humans]] usually do.{{Citation needed}}
 
{{w|Lunch|Lunch}} is listed as if it was another topic of the TTSLTSWBD, but it probably just means that after discussing airships, the conference will take a break to eat lunch, as many [[1530:_Keyboard_Mash|humans]] usually do.{{Citation needed}}
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{{w|Lunch|Lunch}} is listed as if it was another topic of the TTSLTSWBD, but it actually just means that after discussing airships, the conference will take a break to eat lunch, as many [[1530:_Keyboard_Mash|humans]] usually do.{{Citation needed}} Because lunch is a relatively modern construction, filling a niche that grew after dinner shifted later into the day, it may defy one's intuition. In this sense, a three-meal day may seem like it shouldn't work, but most who observe all three meals on schedule would likely argue that it does.
  
 
Mechanical {{w|gyroscope}}s are simple devices consisting of a spinning disc mounted inside three concentric {{w|gimbal}}s as a fixture, or more often observed at work as a single spindle in a free-standing external frame that can be held or moved around by hand. The rotational inertia of the spinning disc resists change in orientation, and tends to remain in a single orientation (if free to do so) or else exert counter-intuitive forces (where directly encouraged to change its central axis). The notion that a disc can remain so steady can be counterintuitive even to those who understand the physical principles. This weirdness has been previously referenced in [[332: Gyroscopes]]. An {{w|Ring laser gyroscope|optical gyroscope}} does not mechanically resist any motion but (relying upon {{w|Sagnac effect|an effect}} originally exploited in a failed attempt to disprove {{w|Special Relativity}}) ultimately provides similar feedback about the rotation of the unit into which it is mounted.
 
Mechanical {{w|gyroscope}}s are simple devices consisting of a spinning disc mounted inside three concentric {{w|gimbal}}s as a fixture, or more often observed at work as a single spindle in a free-standing external frame that can be held or moved around by hand. The rotational inertia of the spinning disc resists change in orientation, and tends to remain in a single orientation (if free to do so) or else exert counter-intuitive forces (where directly encouraged to change its central axis). The notion that a disc can remain so steady can be counterintuitive even to those who understand the physical principles. This weirdness has been previously referenced in [[332: Gyroscopes]]. An {{w|Ring laser gyroscope|optical gyroscope}} does not mechanically resist any motion but (relying upon {{w|Sagnac effect|an effect}} originally exploited in a failed attempt to disprove {{w|Special Relativity}}) ultimately provides similar feedback about the rotation of the unit into which it is mounted.

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