Mef. Walkthrough Construction


Page 1 — inset of the centre

Step 0. Arena
Draw a circle. On it:

∞ s³/m²

Arena. Volume of time as a can. Cavitation in an infinite ocean. Ignore the ocean’s free surface. Not a nest. Container and clerk.

Step 1. Complex set, named Limits
Two bounds inside the circle:

centre limit entropy clamp S m⁴ origami
surface limit π_E^{m/2} Real face

Limits. Complex set = the pair of bounds, not a filing of imaginaries. (f) is the thickness between clamp and face.

Step 2. Two ticks — firing-stroke power
On the rim, two power ticks. Work on the shoulders. Angel on the unrolled line:

^i^

Two strokes counted:

^^ = 2

2 is the exponent at the core. Not minus-two. Not a nest.

Step 3. Locked cell
Inside:

−1

Locked cell. Inertial frame. Every later tick carries this cell.

Step 4. Halo — take it
Around -1:

σ_R ↔

Double head: vector choice +/-. Names State A/B later. σR\sigma_Rstarts here so it is not smuggled back as a coefficient.

Step 5. Work line
Straight line below, length = circumference. Power ticks on the shoulders. Angel:

^i^

Work line. Firing stroke as length. 1-D thickness on a 2-D surface. Lewe assembled. If the two ticks are (f), letter once:

f = ^^

Do not invent a second duration.

Step 6. Count command
Yesterday’s sides:

Complex set [ 2 ^i ] Count command

Tick on the left of (i) if the exponent has been received and the next move is count — or write the working pair as you will use it from here:

1^ count now; exp next (right)
^2 exp received; count next (left)

Count command. First order after the stroke: count. The inertial frame issues it. The locked cell is what is being carried.


Page 2 — after the photograph of page 1

1st shell. 3-D replication of the arena face. Growth face pi_E^^

Second moment of area. Anchored to the superior perspective (ocean face s^3/m^2). Counts now 1^ (right tick), references the 1st shell, then expands exponentially in all directions to the first-shell sphere, limit Sm4.

Impulse. Force of that expansion.
Shock. Ocean response through the bubble face.
Growth face. Creates its own inertial frame. Continuous pressure becomes impulse expansive push. \(\pi_E\) solid from Simultaneous.

Shell 2. Circled ^2. Exponent received. Carries shell 1 in the tick. Reference for the second shell.

Natural set. One centroid line. Primes one side, Intervals the other. First integer fragmentation. The tick still carries -1. Halo inherited, not redrawn.


Caption glossary

Caption glossary

MarkMeans
 s3/m2\infty\ s^3/m^2arena
Sm4S\,m^4centre limit; entropy clamp
πEm/2\pi_E^{m/2}surface limit; Real face
1-1locked cell; inertial frame
σR\sigma_R\leftrightarrowhalo; leftover; +/+/-+/-
i^\wedge i^\wedgeangel
=2^{\wedge\wedge}=2two power strokes
11^\wedgecount now; exp next
2^\wedge 2exp received; count next
f=f=^{\wedge\wedge}duration of the stroke
πE^^ (superscript tick = higher power)growth face
2^\wedge 2 circledshell 2; carries shell 1
centroid lineprimes / intervals

Arrows, unchanged

locked cell −^1 —f→ 1^2
working 1^ —f→ ^2
circuit ^i → ^1 → 1^ → ^2 = 0^{i2}

Photograph page 1 with arena, limits, \(-1\), halo, work line, angel, count command. Then the Natural split. The split will try to steal the centre. Do not let it.