Measurement of Type of Substance Based on Protons, Neutrons and Electrons in the Substance

Journal Title: Asian Journal of Physical and Chemical Sciences - Year 2017, Vol 4, Issue 4

Abstract

Aims: The study aims to determine a method to identify and measure all substances. Study Design: Applying the new structural constant of atoms, s0 = 8.278 691 910, the possibility of introducing type of substance as a new physical quantity and its unit boscovich is studied. Place and Duration of Study: University of Applied Sciences, Zagreb, Croatia, 2015–2017. Methodology: Theoretical studies showed that the velocity of an electron in an atom cannot exceed the speed of light, implying that no atom of atomic number more than Zmax = 2s02 can be generated. It provides the substrate for the unit boscovich, B =1/Zmax = 0.0072953572330. Results: Any substance whose physical or chemical structure is known can be expressed in terms of type of substance, with value S (standing for Soddy's number). The ratio S/B is obtained as a numerical factor f = f(p,n,e) = p/100+n/104+e/108+D/1012, where p, n, and e are the numbers of protons, neutrons, and electrons, respectively, and D is a distinguishing number, where D = D(p,n,e). The function f(p,n,e) represents the numerical value of the physical quantity type of substance, so the following expression applies: S = f(p,n,e) B. Conclusion: Atomic research and knowledge of the maximum atomic number Zmax induced the introduction of type of substance as a new physical quantity and its unit boscovich, B. This allows all existing substances (i.e., vacuum, elemental particles, chemical elements, nuclides, molecules, compounds, and ions) to be expressed as with any other physical quantity.

Authors and Affiliations

Milan Perkovac

Keywords

Related Articles

Adsorption of Cadmium (II) Ions from Aqueous Solution onto Mango Leaves

The objective of this study was to evaluate the use of mango leaves for their ability to remove Cd2+ ions from aqueous solution by batch experiments. The adsorption of Cd2+ ions onto mango leaves were characterized by us...

Characterization and Antibacterial Activity of Zinc Oxide Nanoparticles Synthesized Using Opuntia ficus indica Fruit Aqueous Extract

Zinc Oxide nanoparticles were green synthesized by Opuntia ficus indica fruit aqueous extract. The phytochemicals present in the plant extract act as reducing and stabilizing agents. SEM and UV-Vis spectroscopy were used...

Measurement of Type of Substance Based on Protons, Neutrons and Electrons in the Substance

Aims: The study aims to determine a method to identify and measure all substances. Study Design: Applying the new structural constant of atoms, s0 = 8.278 691 910, the possibility of introducing type of substance as a...

Determination of the Formation Constant of Some Transition Metal Ion- histidine Complexes in Water and Water-dioxane and Evaluation of their Thermodynamic Parameters

Aims: The formation constants of histidine complexes of Fe (III), Co (II), Ni (II), Cu(II), Zn (II) and Pb (II) at temperatures of 25, 30, 37, 45°C were determined potentiometrically, utilizing modified Bjerrum's metho...

Biomechanics of a Bifurcating Green Plant, Part 2: Environmental Thermal Effects

The effects of environmental temperature differentials on the flow of soil mineral salt water in a bifurcating green plant is presented. The problem involves a set of non-linear differential equations tackled by means of...

Download PDF file
  • EP ID EP338778
  • DOI 10.9734/AJOPACS/2017/37863
  • Views 60
  • Downloads 0

How To Cite

Milan Perkovac (2017). Measurement of Type of Substance Based on Protons, Neutrons and Electrons in the Substance. Asian Journal of Physical and Chemical Sciences, 4(4), 1-8. https://europub.co.uk/articles/-A-338778