Formulate Equations for Reciprocity Vector and Scalar of Some Mechanical and Electrical Quantities

§ Babylon University

Send Message

To: Author

Formulate Equations for Reciprocity Vector and Scalar of Some Mechanical and Electrical Quantities

Article Fingerprint

ReserarchID

1275Y

Formulate Equations for Reciprocity Vector and Scalar of Some Mechanical and Electrical Quantities Banner

Key Research Insights

Synthesized scholarly intelligence & interactive research assistant
  • English
  • Afrikaans
  • Albanian
  • Amharic
  • Arabic
  • Armenian
  • Azerbaijani
  • Basque
  • Belarusian
  • Bengali
  • Bosnian
  • Bulgarian
  • Catalan
  • Cebuano
  • Chichewa
  • Chinese (Simplified)
  • Chinese (Traditional)
  • Corsican
  • Croatian
  • Czech
  • Danish
  • Dutch
  • Esperanto
  • Estonian
  • Filipino
  • Finnish
  • French
  • Frisian
  • Galician
  • Georgian
  • German
  • Greek
  • Gujarati
  • Haitian Creole
  • Hausa
  • Hawaiian
  • Hebrew
  • Hindi
  • Hmong
  • Hungarian
  • Icelandic
  • Igbo
  • Indonesian
  • Irish
  • Italian
  • Japanese
  • Javanese
  • Kannada
  • Kazakh
  • Khmer
  • Korean
  • Kurdish (Kurmanji)
  • Kyrgyz
  • Lao
  • Latin
  • Latvian
  • Lithuanian
  • Luxembourgish
  • Macedonian
  • Malagasy
  • Malay
  • Malayalam
  • Maltese
  • Maori
  • Marathi
  • Mongolian
  • Myanmar (Burmese)
  • Nepali
  • Norwegian
  • Pashto
  • Persian
  • Polish
  • Portuguese
  • Punjabi
  • Romanian
  • Russian
  • Samoan
  • Scots Gaelic
  • Serbian
  • Sesotho
  • Shona
  • Sindhi
  • Sinhala
  • Slovak
  • Slovenian
  • Somali
  • Spanish
  • Sundanese
  • Swahili
  • Swedish
  • Tajik
  • Tamil
  • Telugu
  • Thai
  • Turkish
  • Ukrainian
  • Urdu
  • Uzbek
  • Vietnamese
  • Welsh
  • Xhosa
  • Yiddish
  • Yoruba
  • Zulu
Reading Preferences
Font Size
Line Spacing
Background

Abstract

This study deals a new concepts of some physical reciprocally quantities which are vectors or scalars and its relationship with the fundamental quantities. The reciprocal of kinematics dimension quantities of moved particle for linear, rotational and circular movement are resulted the quantities that so called the time quantities such as time velocity, time acceleration. Other derivative quantities were derived from the principle equations to produce reciprocal movement equations. For dynamical mechanics, the quantities were derived from the principle equation such as time force, momentum, torque, energy,…ect. Also some reciprocal quantities due to electricity equations include the reactance, electric current, conductivity, …ect, and its derivative quantities are introduced time current density, time power.

References

17 Cites in Article
  1. Mushfiq Ahmed (2009). Unknown Title.
  2. Mushfiq Ahmed (2009). Discrete and continuous representations of the same motion.
  3. Alam Shah,M Ahsan,Mushfiq Ahmed (2005). Mixed Number Lorentz Transformation.
  4. Mushfiq Ahmed (2012). Unknown Title.
  5. L Rasmussem (1983). Calculation of A Velocity Distribution from Particle Trajectory End-Points.
  6. Victor Felix De Bottan (2006). Theorem of Movement.
  7. Larry Andrews,Ronald Phillips (2003). Mathematical Techniques for Engineers and Scientists.
  8. Benjamin Clifford (2001). Utley, Prof. James Henry Paul, (born 11 Sept. 1936), Professor of Organic Chemistry, Queen Mary and Westfield College (formerly at Queen Mary College), University of London, 1983–2001, now Emeritus.
  9. I Anderson (2002). Maple Packages and Java Applets.
  10. Arianta Rachmana,Aini Jamaluddin (2002). The Effects of Mental Health Issues and Academic Performance.
  11. Craig Bohren,Donald Huffman (1983). Absorption and Scattering of Light by Small Particles.
  12. F Mustafa (2006). New Formulation of the Reciprocal of Velocity for Particle Motion.
  13. F Mustafa (2012). Einstein and the Lorentz-Einstein transformations.
  14. Alonso-Finn (1980). Unknown Title.
  15. A Dukhin,P Goetz (2002). Ultrasound for characterizing colloids.
  16. James Walker (2002). Physics.
  17. S Sze,K Kwok,Ng (2007). Jarvis, Dr John Herbert, (born 16 May 1947), Senior Vice President Advisor, John Wiley & Sons Inc., 2007–09 (Senior Vice President, John Wiley and Sons - Europe, 1997–2007).

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

Faisal A. Mustafa. 2015. "Formulate Equations for Reciprocity Vector and Scalar of Some Mechanical and Electrical Quantities". Global Journal of Science Frontier Research - A: Physics & Space Science GJSFR-A Volume 15 (GJSFR Volume 15 Issue A1).

Download Citation

Journal Specifications

Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

Keywords
Classification
GJSFR-A Classification FOR Code: 240402
Version of record

v1.2

Issue date
February 20, 2015

Language
English
Experiance in AR

Explore published articles in an immersive Augmented Reality environment. Our platform converts research papers into interactive 3D books, allowing readers to view and interact with content using AR and VR compatible devices.

Read in 3D

Your published article is automatically converted into a realistic 3D book. Flip through pages and read research papers in a more engaging and interactive format.

Article Matrices
Total Views: 1.5K
Total Downloads: 112
All Trends

Request Access

Please fill out the form below to request access to this research paper. Your request will be reviewed by the editorial or author team.
X

This is the heading

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

High-quality academic research articles on global topics and journals.

Formulate Equations for Reciprocity Vector and Scalar of Some Mechanical and Electrical Quantities

Faisal Mustafa
Faisal Mustafa Babylon University