II. Small Object Axioms
2.5 Molecular Axioms
Article 38 - Molecular Solid (MOLNet)
The axioms within the Class of Natural Law of MOL-NET MASS are:
1.The axiom class of MOL-NET MASS is derived from the existence of UCA axiom 126-(ATOMIC ELEMENTS), UCA axiom 129-(ATOMIC PROPERTIES), UCA axiom 151-(MOLECULAR ELEMENTS) and Can.453-(MOLECULAR PROPERTIES).
2.MOLECULAR MATRIX (MOL-MATRIX) (LIQUID) MASS is relative to MOLECULAR MATRIX STRUCTURES and MOLECULAR MASS.
3.MOLECULAR MATRIX (MOL-MATRIX) (LIQUID) is equivalent to the SUM of a CORE, MID, SURFACE and ATMOSPHERE PROPERTIES of a MOLECULAR FIELD STRUCTURE.
The axioms within the Class of Natural Law of MOL-NET KINESIS are:
1.The axiom class of MOL-NET KINESIS is derived from the existence of UCA axiom 126-(ATOMIC ELEMENTS), UCA axiom 129-(ATOMIC PROPERTIES), UCA axiom 151-(MOLECULAR ELEMENTS) and Can.453-(MOLECULAR PROPERTIES).
2.MOLECULAR MATRIX (MOL-MATRIX) (LIQUID) MASS is relative to MOLECULAR MATRIX STRUCTURES and MOLECULAR MASS.
3.MOLECULAR MATRIX (MOL-MATRIX) (LIQUID) is equivalent to the SUM of a CORE, MID, SURFACE and ATMOSPHERE PROPERTIES of a MOLECULAR FIELD STRUCTURE.
The axioms within the Class of Natural Law of MOL-NET PROPERTIES are:
1. The AXIOM CLASS of MOL-NET (Molecular Solid Field) Properties is derived from the EXISTENCE of Can.316-(PROPERTIES), Can.319-(UNITA ELEMENTS), Can.320-(UNITA PROPERTIES), Can.378-(SUPER SUB ATOMIC ELEMENTS), Can.379-(SUPER SUB ATOMIC PROPERTIES, Can.390-(SUB ATOMIC ELEMENTS), Can.391-(SUB ATOMIC PROPERTIES), Can.427-(ATOMIC ELEMENTS), Can.428-(ATOMIC PROPERTIES) and Can.452 (MOLECULAR PROPERTIES) and
2. MOL NET (Molecular Solid) Properties are primarily inherited from the properties of the Atomic Elements that form Molecular Elements and Sub-Atomic Ergon Field Properties.
3. All non-inherited properties of Molecular Elements in a MOL FIELD (Molecular Solid) state come from temporary new relationships and interactions of Molecular Elements not previously seen at the Atomic level, such as different ergon fields and molecules themselves behaving in field dynamics.
4. The list of MOL (Molecular) Properties are CORE, MID, SURFACE, ATMOSPHERE, EQUATOR, AXIS, POLES, NORTHERN HEMISPHERE, SOUTHERN HEMISPHERE, ROTATION, ROTAXIS, GEOMETRIC STRUCTURE, VOLUME, UNIQUE POSITION, AWARENESS OF POSITION, RESONANCE, DENSITY, RELATIVITY, SPACE, MASS-ELEMENTAL, MASS-GRAVITATIONAL, MASS-NEUTRINO, MASS-MAGNETON, MASS-POSITRON, MASS-ELECTRON, MASS-PHOTON, MASS-HETON, WEIGHT, KINESIS, FREQUENCY of MOTION, STRONG CHEMICAL FUSION POINT, WEAK CHEMICAL FUSION POINT, STRONG CHEMICAL FISSION POINT and WEAK CHEMICAL FISSION POINT.
The axioms within the Class of Natural Law of MOL-NET STRUCTURE are:
1.The axiom class of MOL-NET CONDUCTIVITY is derived from the existence of Can.314-(Existence), UCA axiom 126-(ATOMIC ELEMENTS), UCA axiom 129-(ATOMIC PROPERTIES), UCA axiom 151-(MOLECULAR ELEMENTS) and Can.453-(MOLECULAR PROPERTIES).
2.MOL-NET (SOLID) CONDUCTIVITY is the CONDUCTION of KINESIS and ERGONS that changes the DENSITY of a MOL-NET (SOLID) within MOLECULAR SPACE. Therefore (MOL-NET CONDUCTIVTIY) is RELATIVE.
The axioms within the Class of Natural Law of MOL-NET HARDNESS are:
1.The axiom class of MOL-NET CONDUCTIVITY is derived from the existence of Can.314-(Existence), UCA axiom 126-(ATOMIC ELEMENTS), UCA axiom 129-(ATOMIC PROPERTIES), UCA axiom 151-(MOLECULAR ELEMENTS) and Can.453-(MOLECULAR PROPERTIES).
2.MOL-NET (SOLID) CONDUCTIVITY is the CONDUCTION of KINESIS and ERGONS that changes the DENSITY of a MOL-NET (SOLID) within MOLECULAR SPACE. Therefore (MOL-NET CONDUCTIVTIY) is RELATIVE.
The axioms within the Class of Natural Law of MOL-NET RESISTENCE are:
1.The axiom class of MOL-NET CONDUCTIVITY is derived from the existence of Can.314-(Existence), UCA axiom 126-(ATOMIC ELEMENTS), UCA axiom 129-(ATOMIC PROPERTIES), UCA axiom 151-(MOLECULAR ELEMENTS) and Can.453-(MOLECULAR PROPERTIES).
2.MOL-NET (SOLID) CONDUCTIVITY is the CONDUCTION of KINESIS and ERGONS that changes the DENSITY of a MOL-NET (SOLID) within MOLECULAR SPACE. Therefore (MOL-NET CONDUCTIVTIY) is RELATIVE.
The axioms within the Class of Natural Law of MOL-NET CONDUCTIVITY are:
1.The axiom class of MOL-NET CONDUCTIVITY is derived from the existence of Can.314-(Existence), UCA axiom 126-(ATOMIC ELEMENTS), UCA axiom 129-(ATOMIC PROPERTIES), UCA axiom 151-(MOLECULAR ELEMENTS) and Can.453-(MOLECULAR PROPERTIES).
2.MOL-NET (SOLID) CONDUCTIVITY is the CONDUCTION of KINESIS and ERGONS that changes the DENSITY of a MOL-NET (SOLID) within MOLECULAR SPACE. Therefore (MOL-NET CONDUCTIVTIY) is RELATIVE.
3.All MOL-NET (SOLID) CONDUCTIVITY is subject to ENTROPY, therefore RELATIVE MOL-NET (SOLID) RESISTENCE.
4.MOL-NET (SOLID) KINETIC CONDUCTIVITY is equivalent to the KINETIC TRANSFER between MOLECULES of VIBRATION and MOTION over TIME less ENTROPY.
5.MOL-NET (SOLID) ERGON CONDUCTIVITY is equivalent to the CONDUCTIVITY of ERGONS such that the ERGON DENSITY of a MOL-NET (SOLID) changes.
6.MOL-NET (SOLID) KINETIC CONDUCTIVITY is not equivalent to MOL-NET (SOLID) ERGON CONDUCTIVITY. Therefore (MOL-NET (SOLID) CONDUCTIVTIY) is RELATIVE.
7.ELECTRICAL CONDUCTIVITY through a MOL-NET (SOLID) is equivalent to MOL-NET (SOLID) ERGON CONDUCTIVITY.
8.The greater the TEMPERATURE, the greater the MOL-NET (SOLID) CONDUCTIVITY.
The axioms within the Class of Natural Law of Mol-Net (Solid) Luminosity are:
1.The axiom class of Mol Net (Solid) Luminosity is derived from the existence of UCA axiom 126-(Atomic Elements), UCA axiom 129-(Atomic Properties), UCA axiom 151-(Molecular Elements) and Can.453-(Molecular Properties).
2.Mol-Net (Solid) Luminosity is a relative measure of luminous intensity of photons passing through or emitted from a particular per unit area and given angle of a solid.
3.Luminous Intensity is the measure of the wavelength-weighted strength emitted by a photon source in a particular direction per unit solid angle relative to some standard measure.
The axioms within the Class of Natural Law of Mol-Net (Solid) Radiance are:
1.The axiom class of Mol-Net (Solid) Radiance is derived from the existence of UCA axiom 126-(Atomic Elements), UCA axiom 129-(Atomic Properties), UCA axiom 151-(Molecular Elements) and Can.453-(Molecular Properties).
2. Mol-Net (Solid) Radiance is equivalent to the fission of Radioactive Hydrogen from Hetons and the Radioactive Decay of Molecules.
3. Mol-Net (Solid) Radiance is equivalent to the entropy of heat through a molecular field, therefore the reaction with hydrogen.
The axioms within the Class of Natural Law of Mol-Net (Solid) Ionization are:
1.The axiom class of Mol-Net (Solid) Ionization is derived from the existence of UCA axiom 126-(Atomic Elements), UCA axiom 129-(Atomic Properties), UCA axiom 151-(Molecular Elements) and Can.453-(Molecular Properties).
2. Mol-Net (Solid) Ionization is when the internal and external ergon fields of a Mol-Net (Solid) are suspended momentarily in a state of flux, reducing the natural resistance of the material to accepting or discharging electro-magnetic exchange.
The axioms within the Class of Natural Law of Mol-Net (Solid) Elasticity are
1.The axiom class of Mol-Net (Solid) Elasticity is derived from the existence of UCA axiom 126-(Atomic Elements), UCA axiom 129-(Atomic Properties), UCA axiom 151-(Molecular Elements) and Can.453-(Molecular Properties).
2. Elasticity of Mol-Net (Solid) forms is when pressure and force is applied against the surface area causing deformation yet retaining a degree of internal integrity thus when pressure is reduced, the form will return close to its original shape.
The axioms within the Class of Natural Law of Mol-Net (Solid) Texture are:
1.The axiom class of Mol-Net (Solid) Texture is derived from the existence of UCA axiom 126-(Atomic Elements), UCA axiom 129-(Atomic Properties), UCA axiom 151-(Molecular Elements) and Can.453-(Molecular Properties).
2. The Mol-Net (Solid) Texture may define its topography or its internal structure or crystallography.
3. Surface texture of surface topography of a Mol-Net (Solid) is the local deviations of a surface from a perfectly flat plane. The measure of a surface texture is generally determined in terms of its roughness, waviness and form.
4. Texture in terms of internal structure or crystallography of a Mol-Net (Solid) is defined as its distribution of crystallographic orientations.
The axioms within the Class of Natural Law of Mol-Net (Solid) Entropy are:
1.The axiom class of Mol-Net (Solid) Entropy is derived from the existence of UCA axiom 126-(Atomic Elements), UCA axiom 129-(Atomic Properties), UCA axiom 151-(Molecular Elements) and Can.453-(Molecular Properties).
2. Mol-Net (Solid) Entropy is a measure of the general inefficiency and resistance of a certain Mol-Net (Solid) to both conserving ergon particles and permitting the flow of ergon particles in fields.
3. All Mol-Net (Solid) forms possess a performance curve of conductivity in the presence of different atmospheric densities.


