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SEO Keyword summary for en.wikipedia.org/wiki/stokes_boundary_layer
Keywords are extracted from the main content of your website and are the primary indicator of the words this page could rank for. By frequenty count we expect your focus keyword to be omega
Focus keyword
Short and long tail
Short Tail Keywords omega displaystyle right |
long Tail Keywords (2 words) boundary layer stokes problem vorticity oscillations stokes boundary fluid bounded |
long Tail Keywords (3 words) stokes boundary layer move to sidebar problem in cylindrical vorticity oscillations near plane rigid plate near the boundary frac omega 2nu |
en.wikipedia.org On-Page SEO Scan
Descriptive Elements
The <head> element of a en.wikipedia.org/wiki/stokes_boundary_layer page is used to inform the browser and visitors of the page about the general meta information. The head section of the page is where we place the page title, the definition of the HTML version used, the language of in which the page is written. In the head section we can also include JavaScript and CSS (markup) files for the page.
Page title
Title length
stokes problem wikipedia
Meta description
Meta description legth
Meta description SEO
No meta relevance in the description detected !
Content SEO
Number of Words
Spam detected?
Headings
Heading distribution
Heading normalisation
Heading SEO impact
Emphasis (bold and italic)
Emphasis SEO impact
Images
Number of images
Images dimensions
Image alt descriptions
Images SEO impact
wikipedia free encyclopedia displaystyle ucos omega frac partial upartial tnu tucos tquad uinfty uure lefteiomega tfyright cos tre eiomega ffrac iomega quad finfty fyexp leftfrac isqrt sqrt yright uytuesqrt ycos leftomega tsqrt delta fmu yrighty rho tfrac right uytfrac cosh lambda hcos helambda hcosomega tlambda yelambda ycosomega hdelta mathrm sinh leftwwimathrm tanh tan wwrightqquad wmathrm ihydelta tuinfty uytuinfty leftcos ttextesqrt yrightright vtheta aomega rsqrt asqrt tright beginalignedvtheta leftrtrightpsi leftlbrace lefttextrm kei leftsqrt romega righttextrm rrighttextrm ker rrightrightcos lefttrightrightleftlefttextrm rrightrightsin lefttrightrightrbrace endaligned psi rightright sin kysin khrightquad textwherequad kfrac ure kcot kcsc upwelling antarctic bottom water icon wikimedia foundation powered mediawiki
Mobile SEO en.wikipedia.org/wiki/stokes_boundary_layer
Mobile rendering
Mobile optimizations
Responsive design detected (mobile css)
No flash detected !
Mobile improvement
Marketing / lead generation for en.wikipedia.org/wiki/stokes_boundary_layer
Social Media
Facebook shares | Facebook likes | ||
Facebook comments | Tweets | ||
Google +1 |
Conversion form
Search form
Analytics
Online presence
SERP Preview
SERP Title
SERP Link
SERP Description
Domain Level SEO
Domain name
16 characters long
Domain name SEO Impact
Path name
boundary found in path !
layer found in path !
stokes found in path !
Structured data
Publisher Markup
Other Structured data
Website configuration
Correct processing of non-existing pages?
Favicon icon found?
Robots.txt found?
Sitemap found?
Navigation and internal links
Navigation
Url seperator
Human readable urls
Number of links
Link SEO Impact
statistics
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en.m.wikipedia.org |
en.wikipedia.org wikimedia foundation inc
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w view history
httpsenwikipediaorgwindexphptitlestokesproblemoldid1214316626
page information
printable version
stokes boundary layer
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wiki read
sir george stokes
navierstokes equations
turbulent
experiments
numerical simulations
approximate methods
kinematic viscosity
noslip condition
vorticity
exponentially
irrotational
potential flow
sound waves
water waves
chiashun yih
sinusoidal
farfield
linear superposition
sound waves
water waves
kelvin functions
couette flow
rayleigh problem
bibcode
drazin philip g
norman riley
s2cid
physical oceanography
wind wave
airy wave theory
ballantine scale
benjaminfeir instability
boussinesq approximation
breaking wave
clapotis
cnoidal wave
cross sea
dispersion
edge wave
equatorial waves
fetch
gravity wave
greens law
infragravity wave
internal wave
iribarren number
kelvin wave
kinematic wave
longshore drift
lukes variational principle
mildslope equation
radiation stress
rogue wave
rossby wave
rossbygravity waves
sea state
seiche
significant wave height
soliton
stokes boundary layer
stokes drift
stokes wave
swell
trochoidal wave
tsunami
megatsunami
undertow
ursell number
wave action
wave base
wave height
wave nonlinearity
wave power
wave radar
wave setup
wave shoaling
wave turbulence
wavecurrent interaction
waves and shallow water
onedimensional saintvenant equations
shallow water equations
wind setup
model
ocean current
atmospheric circulation
baroclinity
boundary current
coriolis force
coriolisstokes force
craikleibovich vortex force
downwelling
ekman layer
ekman spiral
ekman transport
el niosouthern oscillation
general circulation model
geochemical ocean sections study
geostrophic current
global ocean data analysis project
gulf stream
halothermal circulation
humboldt current
hydrothermal circulation
langmuir circulation
loop current
modular ocean model
ocean dynamics
ocean dynamical thermostat
ocean gyre
overflow
princeton ocean model
rip current
subsurface currents
sverdrup balance
thermohaline circulation
upwelling
wind generated current
whirlpool
world ocean circulation experiment
tides
amphidromic point
earth tide
head of tide
internal tide
lunitidal interval
perigean spring tide
rip tide
rule of twelfths
slack tide
tidal bore
tidal force
tidal power
tidal race
tidal range
tidal resonance
tide gauge
tideline
theory of tides
landforms
abyssal fan
abyssal plain
atoll
bathymetric chart
coastal geography
cold seep
continental margin
continental rise
continental shelf
contourite
guyot
hydrography
knoll
oceanic basin
oceanic plateau
oceanic trench
passive margin
seabed
seamount
submarine canyon
submarine volcano
platetectonics
convergent boundary
divergent boundary
fracture zone
hydrothermal vent
marine geology
midocean ridge
mohorovii discontinuity
vinematthewsmorley hypothesis
oceanic crust
outer trench swell
ridge push
seafloor spreading
slab pull
slab suction
slab window
subduction
transform fault
volcanic arc
benthic
deep ocean water
deep sea
littoral
mesopelagic
oceanic
pelagic
photic
surf
swash
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deepocean assessment and reporting of tsunamis
future sea level
global sea level observing system
north west shelf operational oceanographic system
sealevel curve
sea level rise
sea level drop
world geodetic system
acoustics
deep scattering layer
hydroacoustics
ocean acoustic tomography
sofar bomb
sofar channel
underwater acoustics
jason1
jason2 ocean surface topography mission
jason3
acidification
argo
benthic lander
color of water
dsv alvin
marginal sea
marine energy
marine pollution
mooring
national oceanographic data center
ocean
explorations
observations
reanalysis
ocean surface topography
ocean temperature
ocean thermal energy conversion
oceanography
outline of oceanography
pelagic sediment
sea surface microlayer
sea surface temperature
seawater
science on a sphere
stratification
thermocline
underwater glider
water column
world ocean atlas
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Links to external pages
Outloing links
www.wikidata.org
ui.adsabs.harvard.edu
www.doi.org
www.doi.org
api.semanticscholar.org
commons.wikimedia.org
foundation.wikimedia.org
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SEO Advice for en.wikipedia.org
In this section we provide pointers on how you can to optimize your web page so it can be found more easily by search engines and how to make it rank higher by optimizing the content of the page itself. For each of the individual criteria the maximum score is 100%. A score below 70% is considered to be indication that the page is not complying with general SEO standards and should be evaluated and/or fixed. Not every factor is weighted the same and some are not as important as others. Relatively unimportant factors like meta keywords are not included in the overall score.
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PageTitle | 100% | Far too many sites lack a page title. A page title is the first thing that shows in the search results so always use the title element. | |
Title relevance | 87% | A title should reflect the contents of a site. This site has a 67 % match | |
Title Length | 30% | Limit your title to anywhere between 40 and 70 characters. Your title was 27 characters long | |
Meta Description | 0% | A meta description is the second element that shows in the search results so always use the meta description. | |
Meta description length | 0% | The meta description should be between 145 and 160 characters. This meta description is 1 characters long. | |
Meta description relevance | 0% | Meta Description should reflect the contents of a site. This site has a 0 % match | |
Number of internal links | 30% | Linking to internal pages makes pages easier to find for search engines. Try to keep the number of links on your page roughly below 100. There are 275 internal links on this page. | |
Folder structure | 100% | We found a folder structure in the links on your page. A good folder structure makes a site easier to navigate. We found 3 level 1 folders and 6 folders above or in the first level of navigation. | |
Headings | 55% | Headers should reflect the contents of a site. This site has a 24 % match | |
Links | 10% | Link anchors should to some degree reflect the contents of a site. This site has a 5 % match | |
Image alt tags | 34% | Image alt tags should to some degree reflect the contents of a site. This site has a 12 % match | |
Bold and italic | 100% | Bold and italic tags should reflect the contents of a site to some degree. This site has a 38 % match | |
Html ratio | 30% | Try to keep the html / text ratio as low as possible. More html means longer loading times. Layout should be handled in a serpate css file | |
Image descriptions | 90% | 90 % of all images have been described via the "alt" attribute. Describing images with relevant text may lead to better results in the search engines. | |
Page errors | 100% | Pages with no errors display significantly faster on most browsers. We detected 0 errors and warnings | |
WordCount | 20% | An ideal page contains between 400 and 600 words.This page contains 2495 words | |
Server response time | 30% | A slow server slows down a website. This server responds 238.74% slower the average | |
Gzip compression | 30% | This site does not use Gzip compression. Pages may not display as fast as they could | |
Keywords in Domainname | 30% | There are no important keywords in your domain name | |
Keywords in domain path | 100% | There are important keywords in the domain path | |
Structured Data | 100% | Structured data makes it easier for search engines to index your website | |
Inline css | 0% | Do not use inline css declarations. Inline css will slow down the rendering of the website. We detected 133 inline style declarations ( <a style="color:green">) with a size of 3994 bytes | |
Excessive use of the same words | 100% | There is no indication that there are one or more keywords that are used excessively. | |
Frames or iframes | 100% | Perfect, detected not (i)frames on your webpagina | |
Flash | 100% | Perfect, we detected no flash objects on your page | |
Css | 30% | We detected too much (2) CSS files on your page. Css files block the loading of a webpage. | |
Javascript | 100% | Perfect, we did not detect too many blocking JavaScript files | |
Mobile Website | 100% | Perfect, we found a responsive design for mobile users | |
Most important heading | 100% | Perfect, we detected a correct use of the most important (h1) heading! | |
Normalized headings | 40% | We dit not font a normalized heading structure. A heading 2 (h2) for example should be followed by a heading of an equal level (h2), a child heading (h3) or even a aprent heading (h1). |
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en.wikipedia.org images and descriptions
52 images found at en.wikipedia.org Images can improve the user experience for a website by making a pag visually appealing Images can also add extra keyword relevance to a webpage by using alt tags. Images can also slow down a website. If the width and height for a picture is not specified for a browser know in advance how large the image is. A browser must first load the picture and see before it knows how much space should be on the page. Upon reservation In the meantime, the browser can do little but wait. When the height and width for the plate are given in the HTML code, a browser just continues to build for a page while the images load in the background.
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