Welling Mathematics

 

TRs Plural number line theory

 

Welling plural math

Plural mathematics, in extreme brief.

 

Building an accurate number line

Start with determining exactly what around you are fixed     points to measure too and from.

The only fixed points which are absolutely beyond doubt fixed points are; a magnetic, the ecliptic, the orbit, Polaris, the rules of physics (newtsons rules 1-3), etc.

 

Magnet

Push push

Ecliptic a day

Orbit a year

Polaris north star

Newton 3 laws

 

0 same 0 you are used to. 0 is just one thing a place holder for the number line or in this case the several number lines from the same 0.

0 forward or towards to bow of the ship is your standard normal + number line.

0 backwards toward the stern or back of the ship, the captains back. The area you just came from. Would be – or the negative side of the number line.

Same as the single number line you are used to.

But when dealing with measuring things which move according to rules more complicated than just back and forth more lines are required.

0 up vertical towards 90 degrees

0 down vertical towards the 180 degrees.

0 right horizontal towards the starboard

0 left horizontal toward port

Each equation needs to be according to the motions each equation is designed to track.

Everything moves, use a measurement tool based on the most basic rules of motion.

Each motion has a specific wave, frequency, and electro-magnetic signature. The motion itself of the item measured will indicate exactly what number line it is from and traveling too.

Everything moves. Tracking the motions based on how it moves is the point. Using the exactly measurement equation format quarks move in only seems like a good idea. Since everything has a couple quarks in them. (rim shot).

Negative just like standard math is not a good or bad thing, just an indication of location on the number line.

 

 

 

Building an accurate number line

 

TR’s Plural Number line 

Taking the rules of both the ecliptic and magnetic and building a number line system from that.

Rules of the magnetic; push push, pull pull, neutral, size, shape, density, voltage, etc.

Push push

Pull pull

Neutral

Size

Shape

Density

Voltage

Etc.

Polarity

Newton’s three laws of phyics

Law 1 objects at rest

Law 2 objects in motion

Law 3 equal and oposit reaction

How does polarity affect  the number line

The single numbelirne

Negative 0 positive; is the single number line.

However to match motion requires a strict adherence to newtons three laws applied to all aspects of math.

Why apply it to all aspects of math; because everything moves. A+b=c; a is doing motions into variable b. The motion of variable a and variable b merging creates the motion of c. three separate motions going on inside of each and every base equation.

Every equation adds more motion.

Has to be in balance;

Consequently it has to be balanced both vertical up and down, and side to side

But these balance lines to actually be of real balance require independence but balance of motion.

Consequently each numbelirne is not just a straight ridged line but amutable line.

The maliableness of each line requires each of the other 6 lines to move/balance  in accordance.

???All objects move, the only real question is how does it move.

What pushes it

What pulls it

What objects is it larger than

What objects is it smaller than

What density does this object have and how much inertial affects this object and objects around

 

What objects are in relative distance; from closer to farther.

 

TR’s number line

The TR’s number line is based on the concept of; knowing the inadequacies of the single numbleinr nagate any positives the single numberlinre brings. An entirely new measurement device needs to be invented/rebuild which will allow for all the measurmnets required in the next leap in technology.

The single number line

The greater than less than of each line.

All the negatives in sequences

First down; down will always be greater than back.

Back will always be greater than left. But less than down.

Left will be 1 less than back and 2 less than down

All the positives in sequence

(the equal and opposite are true)

Up is greater than forward

Forward is greater than right but, but less than up.

Right is 1 less than forward and two less than up.

?

Center is first;

Down second;

Up third;

Back fourth;

Forward fifth;

Left six;

Right seventh;

Destination eigth (where all first Ætt equations sit.);

The overwhelming number of calcuations are all about the motion of time. From then, through now =, to what happens next. These specific motions are involved with time; time is the back (before, previous, etc) through the 0 to then. 0 being defined in this specific back and fdorwrad as the present. The present is almost always =, since the motion of combining is done in the present. What to combine a+b is in the past. What is the outcome is the future.

Back 0 forward; the 0 is present.

Left 0 right is about actions/thoughts being done. Let me think about this. Stragagie. The 0 is also present.

Down 0 up; the 0 is only present when applied to input (newton’s third laws) from the other number lines. Otherwise the 0 had the definition and the placeholder of a connection between the poles. The

The ? electro-magnetics polarities;

The up and down.

Up and down is more like Polaris and the bottom of the solar system.

The top of the planet according to electro-magnetics rules is the north pole.

The bottom of the planet is the south pole. Electro-magnetics polarity speaking.

Electro-magnetics speaking many of the rules are set by sol. That dynamic will be discussed in later books)

 

 

The directions polarities; back forward, left right.

Are the cardinal directions polarities. They operate on a different

North

South

west

east

 

What is TRs number line

Center

Down

Up

Back

Forward

Left

Right

Destination (where all first Ætt equations sit.)

 

What is TRs number line polarities

Center

Down 0 Up

Back 0 Forward

Left 0 Right

Destination (where all first Ætt equations sit.)

 

 

 

 

 

 

 

 

 

 

 

 

 

Plural Number line

·         Finding fixed points

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