This is a list of well-known dimensionless quantities illustrating their variety of forms and applications. The tables also include pure numbers, dimensionless ratios, or dimensionless physical constants; these topics are discussed in the article.
Biology and medicine
Chemistry
Physics
Physical constants
Fluids and heat transfer
Solids
Optics
Other
Name | Standard symbol | Definition | Named after | Field of application |
Fine-structure constant |  | | | quantum electrodynamics (QED) (coupling constant characterizing the strength of the electromagnetic interaction) |
Havnes parameter |  | | O. Havnes | In dusty plasma physics, ratio of the total charge carried by the dust particles to the charge carried by the ions , with the number density of particles |
Helmholtz number |  | | Hermann von Helmholtz | The most important parameter in duct acoustics. If is the dimensional frequency, then is the corresponding free field wavenumber and is the corresponding dimensionless frequency [7] |
Lundquist number | S | | Stig Lundqvist | plasma physics (ratio of a resistive time to an Alfvén wave crossing time in a plasma) |
Perveance | K | | | charged particle transport (measure of the strength of space charge in a charged particle beam) |
Pierce parameter |  | | | Traveling wave tube |
Beta |  | | | Plasma and fusion power. Ratio of plasma thermal pressure to magnetic pressure, controlling the level of turbulence in a magnetised plasma. |
Poisson's ratio |  | | | elasticity (strain in transverse and longitudinal direction) |
Q factor | Q | | | physics, engineering (Damping ratio of oscillator or resonator; energy stored versus energy lost) |
Relative density | RD | | | hydrometers, material comparisons (ratio of density of a material to a reference material—usually water) |
Relative permeability |  | | | magnetostatics (ratio of the permeability of a specific medium to free space) |
Relative permittivity |  | | | electrostatics (ratio of capacitance of test capacitor with dielectric material versus vacuum) |
Specific gravity | SG | | | (same as Relative density) |
Stefan number | Ste | | Josef Stefan | phase change, thermodynamics (ratio of sensible heat to latent heat) |
Strain |  | | | materials science, elasticity (displacement between particles in the body relative to a reference length) |
Erlang |  | | Agner Krarup Erlang | telephony (a measure of offered load on a telephone circuit) |
Mathematics and statistics
Geography, geology and geophysics
Sport
Name | Standard symbol | Definition | Field of application |
Blondeau number |  |  | sport science, team sports[9] |
Gain ratio | – | | bicycling (system of representing gearing; length traveled over length pedaled)[10] |
Runs Per Wicket Ratio | RpW ratio |  | cricket[11] |
Winning percentage | – | Various, e.g. or  | Various sports |
Other fields
Name | Standard symbol | Definition | Field of application |
Capacity factor | |  | energy |
Cohesion number | Coh | | Chemical engineering, material science, mechanics (A scale to show the energy needed for detaching two solid particles)[12][13] |
Cost of transport | COT |  | energy efficiency, economics (ratio of energy input to kinetic motion) |
Damping ratio |  |  | mechanics, electrical engineering (the level of damping in a system) |
Decibel | dB | | acoustics, electronics, control theory (ratio of two intensities or powers of a wave) |
Elasticity (economics) | E |  | economics (response of demand or supply to price changes) |
Gain | – | | electronics (signal output to signal input) |
Load factor | |  | energy |
Peel number | NP |  | coating (adhesion of microstructures with substrate)[14] |
Pixel | px | | digital imaging (smallest addressable unit) |
Power factor | pf | | electrical (real power to apparent power) |
Power number | Np |  | fluid mechanics, power consumption by rotary agitators; resistance force versus inertia force) |
Prater number | β |  | reaction engineering (ratio of heat evolution to heat conduction within a catalyst pellet)[15] |
Relative density | RD |  | hydrometers, material comparisons (ratio of density of a material to a reference material—usually water) |
References
- ^ "Table of Dimensionless Numbers" (PDF). Retrieved 2009-11-05.
- ^ Becker, A.; Hüttinger, K. J. (1998). "Chemistry and kinetics of chemical vapor deposition of pyrocarbon—II pyrocarbon deposition from ethylene, acetylene and 1,3-butadiene in the low temperature regime". Carbon. 36 (3): 177. doi:10.1016/S0008-6223(97)00175-9.
- ^ Incropera, Frank P. (2007). Fundamentals of heat and mass transfer. John Wiley & Sons, Inc. p. 376. ISBN 9780470055540.
- ^ Popov, Konstantin I.; Djokić, Stojan S.; Grgur, Branimir N. (2002). Fundamental Aspects of Electrometallurgy. Boston, MA: Springer. pp. 101–102. ISBN 978-0-306-47564-1.
- ^ Kuneš, J. (2012). "Technology and Mechanical Engineering". Dimensionless Physical Quantities in Science and Engineering. pp. 353–390. doi:10.1016/B978-0-12-416013-2.00008-7. ISBN 978-0-12-416013-2.
- ^ Fresnel number Archived 2011-10-01 at the Wayback Machine
- ^ S.W. RIENSTRA, 2015, Fundamentals of Duct Acoustics, Von Karman Institute Lecture Notes
- ^ Barbot, S. (2019). "Slow-slip, slow earthquakes, period-two cycles, full and partial ruptures, and deterministic chaos in a single asperity fault". Tectonophysics. 768: 228171. Bibcode:2019Tectp.76828171B. doi:10.1016/j.tecto.2019.228171.
- ^ Blondeau, J. (2021). "The influence of field size, goal size and number of players on the average number of goals scored per game in variants of football and hockey: the Pi-theorem applied to team sports". Journal of Quantitative Analysis in Sports. 17 (2): 145–154. doi:10.1515/jqas-2020-0009. S2CID 224929098.
- ^ Gain Ratio – Sheldon Brown
- ^ "World Test Championship Playing Conditions: What's different?" (PDF). International Cricket Council. Retrieved 11 August 2021.
- ^ Behjani, Mohammadreza Alizadeh; Rahmanian, Nejat; Ghani, Nur Fardina bt Abdul; Hassanpour, Ali (2017). "An investigation on process of seeded granulation in a continuous drum granulator using DEM" (PDF). Advanced Powder Technology. 28 (10): 2456–2464. doi:10.1016/j.apt.2017.02.011.
- ^ Alizadeh Behjani, Mohammadreza; Hassanpour, Ali; Ghadiri, Mojtaba; Bayly, Andrew (2017). "Numerical Analysis of the Effect of Particle Shape and Adhesion on the Segregation of Powder Mixtures". EPJ Web of Conferences. 140: 06024. Bibcode:2017EPJWC.14006024A. doi:10.1051/epjconf/201714006024. ISSN 2100-014X.
- ^ Van Spengen, W. M.; Puers, R.; De Wolf, I. (2003). "The prediction of stiction failures in MEMS". IEEE Transactions on Device and Materials Reliability. 3 (4): 167. doi:10.1109/TDMR.2003.820295.
- ^ Davis, Mark E.; Davis, Robert J. (2012). Fundamentals of Chemical Reaction Engineering. Dover. p. 215. ISBN 978-0-486-48855-4.
Bibliography