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Smart Reasoning:

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Qaagi - Book of Why

Causes

Effects

the significant parametersinfluencingthe surface roughness

significant factorsinfluencingSurface Roughness

all the contributing parameters(passive) is influenced bySurface roughness

the key parametersinfluencingsurface roughness

major factorsinfluencingsurface roughness

the main factorscontributingto surface roughness

all the factors and their interactionswere ... influencingthe surface roughness

a dry etching(passive) caused bya surface roughness

the feed rate ... the most significantinfluencesthe surface roughness

The feed rate and depth of cut ... the factorsinfluencethe surface roughness

the plasma etching process(passive) created bysurface roughness

the in situ etching process(passive) caused bythe surface roughness

the spindle speed and feed rate [ 11(passive) is ... influenced bythe surface roughness

the plasma oxidation process(passive) caused bysurface roughness

The factors ... speed and feedingcontributedon surface roughness

melt fracture(passive) caused bysurface roughness

the insert radius and feed rate ... the main parametersinfluencethe surface roughness

stress during chemical etching(passive) caused bysurface roughness

the process parameters in cylindrical grinding process(passive) is ... influenced bySurface roughness

pulse plating parameters(passive) was influenced bysurface roughness

feed rate and followed by cutting speed(passive) is ... influenced bysurface roughness

the EDM process parameters ... but not by the tool path(passive) is influenced bythe surface roughness

The second and third factorsinfluencingthe surface roughness

that the five factors were consideredto influencesurface roughness

both the feed rate and work speed ... the most important factorinfluencesthe surface roughness

principal , milling cutter taxonomy , machining parameters , chip thickness formation and milling machine parametersinfluencethe surface roughness

Further , it is preferableto setthe surface roughness

the trench etching(passive) caused bythe surface roughness

deep etching(passive) caused bysurface roughness

any uneven etchingleadsto surface roughness

This cleaning processcausedsurface roughness

the WSB process(passive) created bythe surface roughness

the solidification process(passive) caused bysurface roughness

the peeling process(passive) caused bythe surface roughness

The feed rate ... the main parameterinfluencessurface roughness

feed rate ... only one parameterinfluencesto surface roughness

The cutting process parameters , including the spindle speed and the depth of cut , especially the feed rateinfluencethe surface roughness

both the feed rate and the cutting speed , while the depth of cut is the factor that most influenced the cutting force followed by the feed rate(passive) is ... influenced bythe surface roughness

herein ... one or more of such machining parametersto influencesurface roughness

aging and the drying effect of environmental factors(passive) caused bysurface roughness

Increased surface area(passive) created byIncreased surface area

the scattering effects(passive) caused bythe scattering effects

greater frictioncausesgreater friction

both friction and wearinfluencesboth friction and wear

lower scattering loss(passive) caused bylower scattering loss

4 % scattering loss(passive) caused by4 % scattering loss

a reduced scattering loss(passive) caused bya reduced scattering loss

surface scattering model(passive) caused bysurface scattering model

the inherent friction(passive) created bythe inherent friction

Dynamic friction(passive) is caused byDynamic friction

the coast and friction(passive) caused bythe coast and friction

rolling frictioninfluencerolling friction

in lower skin friction dragresultingin lower skin friction drag

The amount of scattering(passive) caused byThe amount of scattering

electron scattering(passive) caused byelectron scattering

to surface area that can hold moisturecontributesto surface area that can hold moisture

scattering losses and limits the Q factorresultsscattering losses and limits the Q factor

power loss through optical scatteringcausespower loss through optical scattering

rough surfaces measurement uncertainty(passive) caused byrough surfaces measurement uncertainty

to optical losses ( such as by scatteringcontributesto optical losses ( such as by scattering

the decrease of light scattering on the surface observed in SEM imagescan influencethe decrease of light scattering on the surface observed in SEM images

light scattering , which can be good or bad for the product ... depending on the applicationcauseslight scattering , which can be good or bad for the product ... depending on the application

e.g. , friction(passive) caused bye.g. , friction

the standard coefficient of friction(passive) caused bythe standard coefficient of friction

to ( S)SWLI measurement errormay contributeto ( S)SWLI measurement error

in scattering of the probe lightresultingin scattering of the probe light

The mirror 's scattering(passive) caused byThe mirror 's scattering

the scattering of incident light ,(passive) caused bythe scattering of incident light ,

more to diffuse scattering than the bulk of the filmscontributedmore to diffuse scattering than the bulk of the films

in better mechanical interlocking , and 2resultingin better mechanical interlocking , and 2

sufficient diffuse light scattering as to minimize or eliminate the nacreous appearancemay createsufficient diffuse light scattering as to minimize or eliminate the nacreous appearance

in a scattering loss thereby degrading the Q of the cavityresultsin a scattering loss thereby degrading the Q of the cavity

Attempting to explain friction , he theorized(passive) is caused byAttempting to explain friction , he theorized

to the scattering of de Broglie waves during operation of the deviceleadsto the scattering of de Broglie waves during operation of the device

numerous problems(passive) caused bynumerous problems

multitudinous problems(passive) caused bymultitudinous problems

in scattering of the SPs and hence an increase in attenuationwill resultin scattering of the SPs and hence an increase in attenuation

scattering of reflected light ( Rayleigh scatteringcausesscattering of reflected light ( Rayleigh scattering

to surface area ... and that within the investigated degree of conversion ( < 30 { \%contributedto surface area ... and that within the investigated degree of conversion ( < 30 { \%

scattering of electrons ... and there is a possibility to increase the resistancecausesscattering of electrons ... and there is a possibility to increase the resistance

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