STATISTICS: Snap-ratchet

VOLITION: 3
( 3 active u / 1 dual-axial u)

EQUILIBRIUM:  1
(1 u / 1 stem / 1 cycle)

EFFICIENCY: 3 ( 3 Ve / 1 VE )

VOLITIONAL STATEMENT:
Device resembling a pair of
upward-held skis operates under
the vertical lever and distanced
pivot with lateral counter-tilt to
create a unique anticipation of
requisites based on singular
energy input (weight with possible
momentum amenable to slope);
The lateral countertilt is the
contricit arbitrator of all ratchet
designs: above tentatively

Ratchet: An Exemplary (Example)
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white elephant

Metalstick

Torque

[Ratchet]

ObscLever

Angularity

Inspire

Physics Ex
ratchet 1
Ratchet properties give this ramped structure a pivoty
latch-and-wind feeling suggesting propertic volitum
ratchet 2
A second example of this visual phenomena, which
suggests isometry and operability
ratchet abstract
The principles may be
similar to the phenomenon
of a lever acting against a
laterally supported member;
results are good within a
short range, if not operably
at proportionally significant
distances, eg the lateral
member could operate the
short end of another lever,
or by distanced pivot and
opposite or
more-than-vertical
application engage with a
process of lateral
counter-tilt with snap
properties; either has
obvious results outside of
conceiving that a device is
built of these
MAIN

PM Theory

CONCEPTS
*Exemplaries
* Volit Arch
* PM buildings
* Art
*Oddities
* PM snd fx


Grav-Buoy2

Fluid Lever

Curving Rail

Motive Mass

Repeat Lever

Tilt Motor

Coquette

Magnet

Bezel Weight

Grav-Motor

Conv. Wheel

Pendulums

Escher Mach

Spin Top

Apollo Device

Early Failures

DISCLAIMER

PM Types
ratchet 3
Picture a ball weight resting in
the trough between the bars--
twisting of the lower member
as though fulcrumed at the
aperture-juncture creates a
subtle angularity useable by
anaxial leverage; by contrast
when the upper member is
fulcrumed the lip may be
passed with the stipulation of
low movement-to-impetus
result; either result is
incidental yet illustrative
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