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Linear acceleration is less readily sustained and has fewer familiar applications.
When the linear acceleration is unimportant or zero then the are negligible.
So, to increase scavenging potential, the air must maintain a positive linear acceleration curve.
Constant linear acceleration could theoretically provide relatively short flight times around the solar system.
For the case of constant linear acceleration, a substitute for the real situation is simple.
It can be practically achieved by the use of different forces, particularly the centrifugal force and linear acceleration.
It provides something lacking in most class competitors: torquey, linear acceleration.
The otolithic membrane also plays a critical role in the body's ability to sense linear acceleration.
Because of that, it is linear acceleration will be less than if it were just sliding down the ramp.
However, the parallel between a linear acceleration and gravitation is conceptually simpler.
Information from the otolith organs reflects gravity and linear accelerations of the head.
They are sensitive to gravity and linear acceleration.
It states that such a body may only possess a linear acceleration if it is not rotating.
Its function is to detect vertical linear acceleration.
This bends the stereocilia, which is interpreted by the brain as vertical linear acceleration.
Linear acceleration, even at a low level, can provide sufficient g-force to provide useful benefits.
Low-impulse but long-term linear acceleration has been proposed for various interplanetary missions.
Assume for simplicity that there is no gravity or linear acceleration so I am functionally weightless.
Since these models oppose gravity, their linear accelerations at model scale match those of full-size aircraft.
The inertia of the otolithic membranes is especially important in detecting linear acceleration.
Linear acceleration works as well.
Hair cells of the maculae activate afferent receptors in response to linear acceleration.
These are called the otolithic organs and are responsible for detecting linear acceleration, or movement in a straight line.
There is an adaptation to weightlessness in orbit that carries over to post-flight reactions to linear acceleration.
Accelerometers measure linear acceleration and tilt angle.