Meg2. Time and Force Units — locked in

Rey.BEng 15th September 2026

Units — locked for the next plate
Family of distance, family of time, force from first principles

Two families. Same joint. Ticks only where the journey is a count or an exponent. Superscript without a tick is ordinary power. (Note exponent is written simply as ( ) when it must not be read as a tick.)


Distance

MemberMarkMeans
Observationalm^length; count now, exp next
Realm^2area; first moment done, exponent received
Simultaneousm(3)volume; no tick — can, not journey
Instantm^4centroid; axis; Time-Particle dot

Time

MemberMarkMeans
ObservationalContSeccontinuous second; arena of Algebraic Real
RealRealSecpacket; measure (h)
Simultaneousmsm\cdot s as time, and N/m(2)duration; stretching skin of the vortex
Instantk.g.s^2package of the instant

Lewe Abb. 9 is the placing of supports. The time unit m.s is the product along the support, not a clock on the wall.

Force–time product on the (x)-axis:

N^m(2)

Right tick on (N): count the force now. The ((2)) on the moment is ordinary second-moment, unless you intend the journey — then write ^2.


Breakdown of (N)

N = k · g · s^2
LetterMeans
(k)baseline; 0-temperature of CMB-2 relative to CMB-1; measured pulse; quality / wriggle / comfort; hold the toggle \(+\)
(g)weight; compressive response relative to the m^4 centroid; vector of force; Lewe 1906
s^2area of time that stretches to reassemble contact patches; unit of countersnap; between 1st and 2nd moments at CMB-1 and CMB-2

Next page: CMB temperature anisotropy as that (k)-pulse. Not here.


Residuals

residual speed m^ / s Observational length over time
carrier ^i^ Lifespan
α arcsec tilt; disc to rim
r^m = π_E ^^ growth face
σ_R celerity² m/s²

σR\sigma_R does the work: duration of the precessional-axis whip in State A. Celerity squared is acceleration in SI clothing and leftover in this house. Do not file it as (g). (g) is the vector of the clamp. σR\sigma_R is the whip that keeps (2) from closing.


Infinity — relative to stance

from Observational (ContSec, disinterested) ^s^{(3)} / m^{(2)}
from the angel ^i^ 3^s / √(2 i m)

Same can. Two letterings. Orthogonal surface energy is spent — not carried, not wasted, not a -1/2 phase left on the books. Equations close. You know (2) is σR\sigma_R. You close anyway, and you close +.


Real Force, first principles

N^ m / s²

That is the package: force counted N^, acting through residual celerity squared σR\sigma_R’s unit).

Two ticks? One tick.

N^ one tick — you are counting force
m/s² σ_R’s unit — no second tick unless you are raising that unit to an exponent

Two ticks would mean a second journey on the same line N^^, which is the firing stroke ^^2, already spent at the core. Do not spend it twice. Write:

N^ m/s² Real Force
^^ = 2 already at the locked cell
σ_R = 2^− does the whip; unit m/s²

One strip for the drawing

m^ | m^2 | m(3) | m^4
ContSec | h | N^/m(2) | k.g.s^2
σ_R m/s²
N^ m/s²
^i^ —
∞ ^s(3)/m(2) or 3^s/√(2im)
close +

Hold the toggle positive. (k) next.