onnes(passive) was discovered byTemperature super - conductivity after superconductivity
a special tablesettingthe effect of temperature on the conductivity
often(passive) is ... setA conductivity / temperature instrument
a conditionwill causelow?electrical conductivity
the lattercausesthe temperature dependency of conductivity
the transfer of electrons(passive) is contributed byThe conductivity increasing with the temperature
after superconductivity(passive) was discoveredTemperature super - conductivity
The electrochemical process ... corrosioncausesconductivity in water
ions(passive) is caused byConductivity of water
The electrochemical processcausesconductivity in water
the differential mixing of the injected tracer into the bath(passive) caused byconductivity of water
High and fine porosityleadsto low thermal conductivity
by the increased phonon scattering by grain boundaries and defects(passive) caused bylow thermal conductivity
Insulationleadslow thermal conductivity
a planetdiscoveredconductivity of heat
by electrons(passive) contributed bylow thermal conductivity
by particle diffusion(passive) caused byheat conductivity
moisturecausinglow thermal conductivity
by high temperature deformation(passive) caused bylow thermal conductivity
plastic deformation and tool(passive) caused bylow thermal conductivity
the display registerto leadthe thermistor temperature
the display registerleadsthe thermistor temperature
pipecausingthermistor temperature
Gold?s high malleability , resistance to corrosion and most other chemical reactionshave ledconductivity of electricity
Gold 's high malleability , ductility , resistance to corrosion and most other chemical reactions , andhave ledconductivity of electricity
Its characteristic of high malleability , ductility , resistance to corrosion and most chemical reactions , andhave ledconductivity of electricity
9 ] Gold 's high malleability , ductility , resistance to corrosion and most other chemical reactions , andhave ledconductivity of electricity
the imaginary modes ... propagonscontributenegligibly to the thermal conductivity
factorsinfluencingthermal conductivity of nanofluids
by spin - orbit interactions(passive) caused byAnisotropic conductivity
The scientists used " mesh - based " transformation opticsto designanisotropic conductivity
by having increased phonon scattering at the carbon and the non - carbon material boundary(passive) caused bythermal conductivity
propertiesoriginatefrom protonic conductivity
dissolved salts and minerals in the water(passive) is influenced byConductivity
dissolved minerals ( salts ) in water(passive) is caused byConductivity
three solution characteristics , namely : temperature , pH , and dissolved solids concentration(passive) can be influenced byConductivity
by a thermal degradation mechanism in the conductive polymer(passive) caused byconductivity
a thermal degradation mechanism in the conductive polymer(passive) caused byconductivity
by the oxidation of conductive polymer compound layer by the oxygen in penetrating air which and(passive) caused byconductivity
due to inorganic dissolved salts in a solution called electrolytes(passive) is causedConductivity Conductivity
the laser crystallizing thresholdmay influencethe laser crystallizing threshold
the measurementdo ... influencethe measurement
to insignificant measurement errorsleadsto insignificant measurement errors
to the increase of electrolyte impedanceleadsto the increase of electrolyte impedance
in energy savingsto resultin energy savings
corrosioncausescorrosion
in a thermally activated processoriginatingin a thermally activated process
to better chip flowleadingto better chip flow
from differences in the temperature of various soil layersresultsfrom differences in the temperature of various soil layers
to a potential difference between themleadingto a potential difference between them
lowresultlow
in better heat distributionresultingin better heat distribution
in the 1800swas discoveredin the 1800s
from the high hole concentrationmainly originatingfrom the high hole concentration
in accelerated transfer of heatresultsin accelerated transfer of heat
in good at transferring heatresultsin good at transferring heat
in goodresultsin good
alsoresultsalso
of aluminum or copperpreferably composedof aluminum or copper
in high thermal gradients andcan also resultin high thermal gradients and
to a poor TE figure - of - merit ( zTleadingto a poor TE figure - of - merit ( zT
to its outstanding thermal shock resistancecontributesto its outstanding thermal shock resistance
to faster heat dissipationwill leadto faster heat dissipation
to the low shrinkage in usecontributesto the low shrinkage in use
to more efficient mechanical wave generation from a heat fluxleadsto more efficient mechanical wave generation from a heat flux
as die castingoriginally designedas die casting
of the high efficiency air convection cooling structuredesignedof the high efficiency air convection cooling structure
to poor heat transferleadsto poor heat transfer
to poor heat transfer soleadsto poor heat transfer so
to the low shrinkagecontributesto the low shrinkage
to potential thermal gradient from the crucible wall to the center of the source material , high surface area with the potential for large water loadleadingto potential thermal gradient from the crucible wall to the center of the source material , high surface area with the potential for large water load
to a very efficient and complete regenerationleadingto a very efficient and complete regeneration
to higher temperature losscontributingto higher temperature loss
high temperature on the tool surfacecauseshigh temperature on the tool surface
in insulating the surfacemay resultin insulating the surface
plastic deformation of the cutting pin and faster tool wearcausesplastic deformation of the cutting pin and faster tool wear
to the higher efficiency of the methodcontributesto the higher efficiency of the method
in a more comfortable productresultsin a more comfortable product
to high temperature of cutting tool tipleadsto high temperature of cutting tool tip