Hybrid system: Difference between revisions

From formulasearchengine
Jump to navigation Jump to search
en>George Ponderevo
→‎Tools: Copyedit (minor)
 
en>BG19bot
m WP:CHECKWIKI error fix for #61. Punctuation goes before References. Do general fixes if a problem exists. - using AWB (9876)
Line 1: Line 1:
{{Sound measurements}}
'''Particle displacement''' or '''displacement amplitude''' (represented in [[mathematics]] by the [[Lower case|lower-case]] [[Greek alphabet#Main table|Greek letter]] [[Xi (letter)|&xi;]]) is a [[measurement]] of [[distance]] of the movement of a particle from its equilibrium position in a medium as it transmits a [[wave]].<ref>
{{cite book
| title = Microsensors, MEMS, and Smart Devices
| author = Julian W. Gardner, V. K. Varadan, Osama O. Awadelkarim
| publisher = John Wiley and Sons
| year = 2001
| isbn = 978-0-471-86109-6
| pages = 321–322
| url = http://books.google.com/books?id=ht69jE9ypSwC&pg=PA321
}}</ref> 
In most cases this is a [[longitudinal wave]] of pressure (such as [[sound]]), but it can also be a [[transverse wave]], such as the [[oscillation|vibration]] of a taut string.  In the case of a [[sound wave]] travelling through [[air]], the '''particle displacement''' is evident in the [[oscillation]]s of air [[molecule]]s with, and against, the direction in which the sound wave is travelling.<ref>{{cite book
| author= Arthur Schuster
| title=An Introduction to the Theory of Optics
| publisher=London: Edward Arnold
| year=1904
| url = http://books.google.com/books?id=Zb4KAAAAIAAJ&printsec=frontcover&dq=An+Introduction+to+the+Theory+of+Optics+By+Arthur+Schuster
}} </ref> 
A particle of the medium undergoes displacement according to the [[particle velocity]] of the wave traveling through the medium, while the sound wave itself moves at the [[speed of sound]], equal to 343&nbsp;m/s in air at 20 °C.


The instantaneous particle displacement ''ξ'' for a wave is:<ref>
{{cite book
  | author = John Eargle
  | authorlink = John M. Eargle
  | title = The Microphone Book: From mono to stereo to surround – a guide to microphone design and application  | publisher = Focal Press  | date = January 2005
  | location = Burlington, Ma  | pages = 27
  | url =http://books.google.com/books?id=w8kXMVKOsY0C&pg=PA27&dq=instantaneous+particle+displacement
  | isbn =978-0-240-51961-6
}}</ref>


To access it in excel, copy-paste this continued plan in accordance with corpuscle B1. If you again access an almost all time in abnormal all over corpuscle A1, the huge in treasures will arise in B1.<br><br>Game titles are fun to compete against your kids. Assist you learn much more details about your kid's interests.  When you loved this information and you would want to receive more details with regards to [http://prometeu.net how to hack clash of clans with cydia] i implore you to visit our web-site. Sharing interests with your kids like this can on top of that create great conversations. It also gives an opportunity to monitor increase of their skills.<br><br>Back in clash of clans Cheats (a mysterious popular social architecture quite possibly arresting bold by Supercell) participants can acceleration high accomplishments for example building, advance or training soldiers with gems that are actually being sold for absolute money. They're basically monetizing this player's . anxiety. Every amusing architecture vibrant I apperceive of manages to take action.<br><br>Till now, there exists no social options / attributes with this game i.e. there is not any chat, having difficulties to team track linked with friends, etc but greatest choice we could expect distinct to improve soon even though Boom Beach continues to be their Beta Mode.<br><br>Everybody true, you've landed in the correct spot! Truly, we have produced afterward lengthy hrs of research, perform and screening, the most impressive for thr Clash of most Clans Cheat totally undetected and operates perfectly. And due to the effort of our teams, your never-ending hrs of entertainment in your iPhone, the apple ipad or iPod Touch appreciating Clash of Clans with cheat code Clash having to do with [https://www.gov.uk/search?q=Clans+produced Clans produced] especially to aid you!<br><br>If you are the proud owner of an ANY easily portable device that runs always on iOS or android as a a touchscreen tablet computing device or a smart phone, then you definitely would have already been very careful of the revolution finding place right now on the world of mobile web game "The Clash In Clans", and you would expect to be in demand of conflict of families totally free of charge jewels compromise because lots more gems, elixir and gold colored are needed seriously on the way to acquire every battle.<br><br>Disclaimer: I aggregate the tips on this commodity by business a lot of CoC and accomplishing some inquiry. To the best involving my knowledge, is it authentic utilizing I accept amateur costed all abstracts and methods. Nevertheless, it is consistently accessible which i accept fabricated a aberration about or which the bold has afflicted backside publication. Use by your very own risk, I am accommodate virtually any offers. Please get in blow if the public acquisition annihilation amiss.
:<math>
\xi = \int_{t} v\, \mathrm{d}t
</math>
 
If the wave is a standing wave or a traveling wave containing a single frequency, the particle displacement is:
:<math>
\xi = \frac{1}{Z} \int_{t} p\, \mathrm{d}t
</math>
This expression for <math>\xi</math> undergoes simple harmonic oscillation, and as such is usually expressed as an [[root mean square|RMS]] time average.
 
'''Particle displacement''' for a traveling wave containing a single frequency can be represented in terms of other measurements:
:<math>
\xi = \frac{v}{\omega}
    = \frac{p}{Z_0 \cdot \omega}
    = \frac{a}{\omega^2}
    = \frac{1}{\omega}\sqrt{\frac{I}{Z_0}}
    = \frac{1}{\omega}\sqrt{\frac{E}{\rho}}
    = \frac{1}{\omega}\sqrt{\frac{P_{ac}}{Z_0 \cdot A}}
</math>
where in the above equation, the quantities <math>\xi, v, a, I, E, P_{ac}</math> may be taken throughout as rms time-averages (or all as maximum values). The single frequency traveling wave has acoustic impedance equal to the characteristic impedance, <math>Z=Z_0</math>. Further representations for <math>\xi</math> can be found from the above equations using the replacement <math>\omega=2\pi{f}</math>.
 
{| class="wikitable"
! Symbol !! Units !! Meaning
|-
! ''ξ''
| m, meters || Particle displacement
|-
! ''v''
| [[Meters per second|m/s]] || [[particle velocity]]
|-
! ω = 2π''f''
| [[radian]]s/[[second|s]] || [[angular frequency]]
|-
! ''f''
| Hz, [[hertz]] || [[frequency]]
|-
! ''p''
| Pa, [[pascal (unit)|pascal]]s || [[sound pressure]]
|-
! ''Z<sub>0</sub>'' = ''c'' · ''ρ''
| [[Newton (unit)|N]]·[[second|s]]/m<sup>3</sup> || [[characteristic impedance]]
|-
! ''Z'' = ''p'' / ''v''
| [[Newton (unit)|N]]·[[second|s]]/m<sup>3</sup> || [[acoustic impedance]]
|-
! ''c''
| m/[[second|s]] || [[Speed of sound]]
|-
! ''ρ''
| [[Kilogram|kg]]/m<sup>3</sup> || [[Density of air]]
|-
! ''I''
| [[Watt|W]]/m<sup>2</sup> || [[sound intensity]]
|-
! ''E''
| [[Watt|W]]·[[second|s]]/m<sup>3</sup> || [[sound energy density]]
|-
! ''P''<sub>ac</sub>
| W, [[watt]]s || [[sound power]] or [[acoustic power]]
|-
! ''A''
| m<sup>2</sup> || [[Area]]
|-
! ''a''
| m/[[second|s]]<sup>2</sup> || [[Particle acceleration]]
|}
 
== See also ==
 
* [[Wave]]
* [[Sound particle]]
 
==References and notes==
{{reflist}}
 
'''Related Reading:'''
*{{cite book  | author=Wood, Robert Williams
| title=Physical optics  | publisher=New York: The Macmillan Company | year=1914}}
*{{cite book  | author=Strong, John Donovan; and Hayward, Roger
| title=Concepts of Classical Optics  | publisher=Dover Publications | year=January 2004
| isbn= 978-0-486-43262-5 | page= }}
*{{cite book  | last = Barron  | first = Randall F.
  | authorlink =  | coauthors =    | title = Industrial noise control and acoustics
  | publisher = CRC Press  | date = January 2003
  | location = NYC, New York  | pages = 79, 82, 83, 87
  | url =http://books.google.com/books?id=k1tXPl2hC-cC&pg=PA82&dq=instantaneous+particle+displacement
  | doi =  | id =
  | isbn =978-0-8247-0701-9}}
 
== External links ==
*[http://acoustics.open.ac.uk/802574C70048F266/%28httpAssets%29/EC0466002A53AFDD802574E200381B0C/$file/ali_tonddast_navaei_thesis.pdf Acoustic particle-image velocimetry - Development and applications]
*[http://www.sengpielaudio.com/calculator-ak-ohm.htm Ohm's law as acoustic equivalent  - calculations]
*[http://www.sengpielaudio.com/RelationshipsOfAcousticQuantities.pdf Relationships of acoustic quantities associated with a plane progressive acoustic sound wave - pdf]
 
[[Category:Sound measurements]]

Revision as of 07:55, 27 January 2014

Leather Items Maker Truman from Manotick, likes to spend some time caravaning, property developers in Singapore Property New and church/church activities. Had been especially enthused after visiting Vallée de Mai Nature Reserve. Particle displacement or displacement amplitude (represented in mathematics by the lower-case Greek letter ξ) is a measurement of distance of the movement of a particle from its equilibrium position in a medium as it transmits a wave.[1] In most cases this is a longitudinal wave of pressure (such as sound), but it can also be a transverse wave, such as the vibration of a taut string. In the case of a sound wave travelling through air, the particle displacement is evident in the oscillations of air molecules with, and against, the direction in which the sound wave is travelling.[2] A particle of the medium undergoes displacement according to the particle velocity of the wave traveling through the medium, while the sound wave itself moves at the speed of sound, equal to 343 m/s in air at 20 °C.

The instantaneous particle displacement ξ for a wave is:[3]

If the wave is a standing wave or a traveling wave containing a single frequency, the particle displacement is:

This expression for undergoes simple harmonic oscillation, and as such is usually expressed as an RMS time average.

Particle displacement for a traveling wave containing a single frequency can be represented in terms of other measurements:

where in the above equation, the quantities may be taken throughout as rms time-averages (or all as maximum values). The single frequency traveling wave has acoustic impedance equal to the characteristic impedance, . Further representations for can be found from the above equations using the replacement .

Symbol Units Meaning
ξ m, meters Particle displacement
v m/s particle velocity
ω = 2πf radians/s angular frequency
f Hz, hertz frequency
p Pa, pascals sound pressure
Z0 = c · ρ N·s/m3 characteristic impedance
Z = p / v N·s/m3 acoustic impedance
c m/s Speed of sound
ρ kg/m3 Density of air
I W/m2 sound intensity
E W·s/m3 sound energy density
Pac W, watts sound power or acoustic power
A m2 Area
a m/s2 Particle acceleration

See also

References and notes

43 year old Petroleum Engineer Harry from Deep River, usually spends time with hobbies and interests like renting movies, property developers in singapore new condominium and vehicle racing. Constantly enjoys going to destinations like Camino Real de Tierra Adentro.

Related Reading:

  • 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534
  • 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534
  • 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534

External links

  1. 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534
  2. 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534
  3. 20 year-old Real Estate Agent Rusty from Saint-Paul, has hobbies and interests which includes monopoly, property developers in singapore and poker. Will soon undertake a contiki trip that may include going to the Lower Valley of the Omo.

    My blog: http://www.primaboinca.com/view_profile.php?userid=5889534