thermal expansion or stress(passive) caused byelongation
the force applied to the boltcausingelongation
wear in the pin - bush joint(passive) caused byelongation
Cellular prion protein targets amyloid - beta fibril ends via its C - terminal domainto preventelongation
Cellular prion protein targets amyloid - ß fibril ends via its C - terminal domainto preventelongation
Tension ... stresscauseselongation
high tension(passive) caused byelongation
as tension memberspreventelongation
premature wear(passive) caused byelongation
Pin wearcauseselongation
the layers ... compression or tensioncauseselongation
requires more forceto causeelongation
a pulling force(passive) caused byelongation
How Breath is usedto createELONGATION
moutnain frictional abrasion of the load - bearing surfaces of the chaincausingelongation
thermal expansion accompanying supply of molten metal(passive) caused byelongation
The Aerobic Respiration Experiment B Okazaki fragmentspreventelongation
thermal expansion of the reading sensors due to changes in an environmental temperature(passive) caused byelongation
expansion of the diameter of a main spindle with a radial sensor(passive) caused byelongation
the phosphorylation status of the C - terminal domain ( CTD ) of Pol II largest subunit ( RPB1 ) , which serves as a platform for assembly of factors that regulate transcription initiation , elongation , termination and mRNA processing Subunit structure : Component of the RNA polymerase II ( Pol II(passive) is influenced byElongation
wear between pins and rollers(passive) is caused byElongation
wear between the pin and bushing(passive) caused byElongation
offered by a material against a forceto preventelongation
air pressure ... the forcecauseelongation
heat deformation or elastic(passive) created byelongation
wear or temperature changes , and to keep the chain tight(passive) caused byelongation
We report that P - TEFb is recruited to the promoter in a catalytically inactive state bound to the inhibitory 7SK small nuclear ribonucleoprotein ( snRNPthereby preventingelongation
thermal expansion of the first and second reading sensors 9 and 11 due to changes in an environmental temperature(passive) caused byelongation
applications 's high strength helpspreventelongation
Heat treatedto preventelongation
stresses or heat(passive) caused byelongation
Xgly4Mo ( Fig . 4(passive) caused byelongation
The rollers also wear - often as much as 10 times more than the pins and bushingscauseelongation
in the slackness over the pulleys and loss of tension and powerresultingin the slackness over the pulleys and loss of tension and power
from excessive wear of the connecting pinsresultingfrom excessive wear of the connecting pins
at 150 � C. Range , � C. Strength , Class Durometer MPa % for 22 h , % Minimum Maximum J / cm2__________________________________________________________________________General purposesetat 150 � C. Range , � C. Strength , Class Durometer MPa % for 22 h , % Minimum Maximum J / cm2__________________________________________________________________________General purpose
at 150 ° C. Range , ° C. Strength , Class Durometer MPa % for 22 h , % Minimum Maximum J / cm.sup.2__________________________________________________________________________General purposesetat 150 ° C. Range , ° C. Strength , Class Durometer MPa % for 22 h , % Minimum Maximum J / cm.sup.2__________________________________________________________________________General purpose
in full length transcripts [ 30resultingin full length transcripts [ 30
in a large heterogeneity in length as shown by the high dispersion ( open red dots , Fig . 4C , Gresultingin a large heterogeneity in length as shown by the high dispersion ( open red dots , Fig . 4C , G
high transmission power consistently across applicationresultinghigh transmission power consistently across application
downwards of the second movable chamber 55 552settingdownwards of the second movable chamber 55 552
from tensioning of the studbolt 19 by action of the tensioning assembly 25 on the studbolt 19resultingfrom tensioning of the studbolt 19 by action of the tensioning assembly 25 on the studbolt 19
force - driven constriction and ensuing fission ( Supplementary Figthereby preventingforce - driven constriction and ensuing fission ( Supplementary Fig
from the high temperature [ 27resultingfrom the high temperature [ 27
knot slippageto preventknot slippage
r Stiffness - Bolt tension(passive) is created byr Stiffness - Bolt tension
at break expressed in percentsetat break expressed in percent
the refractive index outside this region(passive) caused bythe refractive index outside this region
at break with increase in " performance factorsetat break with increase in " performance factor
transcription initiation within the coding regionto preventtranscription initiation within the coding region
to creating a new cell instead of increasing the cell lengthleadsto creating a new cell instead of increasing the cell length
from deformation of the portion of the test specimen surface having the length of l1,2resultingfrom deformation of the portion of the test specimen surface having the length of l1,2
after break ; tensile properties ; tensile set ; tensile strength ; tensile stress ; yield point ; ; ICS Number Code 83.060setafter break ; tensile properties ; tensile set ; tensile strength ; tensile stress ; yield point ; ; ICS Number Code 83.060
cleavages and gaps that increase the resistance ... because the MWCNTs are so long , neighbouring CNTs remain in contact as they slide and rub against each other , ensuring a much more progressive decrease in conductivity less affected by created gaps than if their length were on the order of micrometrescreatescleavages and gaps that increase the resistance ... because the MWCNTs are so long , neighbouring CNTs remain in contact as they slide and rub against each other , ensuring a much more progressive decrease in conductivity less affected by created gaps than if their length were on the order of micrometres
from ambient conditions , such as temperature and humidityresultingfrom ambient conditions , such as temperature and humidity
the surface structure(passive) caused bythe surface structure
when a muscle is stretched beyond a muscle 's capacitycausedwhen a muscle is stretched beyond a muscle 's capacity
the elastic strands(passive) caused bythe elastic strands
changes in e.g.causeschanges in e.g.
injuryto preventinjury
the sleeve 20 to narrow whereas shortening the sleeve 20 makes it widercausesthe sleeve 20 to narrow whereas shortening the sleeve 20 makes it wider
external bending of the part cross - sectioncausingexternal bending of the part cross - section
applied stress(passive) caused byapplied stress
at 50 % 25%determined in conformity with UNI 7321.74 on solidtest specimen at 100relative dielectric constantsetat 50 % 25%determined in conformity with UNI 7321.74 on solidtest specimen at 100relative dielectric constant
from component wear , stretching , or otherwiseresultingfrom component wear , stretching , or otherwise
to the formation of contractile dipolesleadsto the formation of contractile dipoles
in a compensatory effect for the necking phenomenon typically observed at the midpoint of the fabricresultingin a compensatory effect for the necking phenomenon typically observed at the midpoint of the fabric
bowing of the line where such bowing may be hazardous to continued operation because it may bring the line into proximity of a dangerous condition or result in kinkingcan causebowing of the line where such bowing may be hazardous to continued operation because it may bring the line into proximity of a dangerous condition or result in kinking
from a balance between forward movement by luminal cells and restraining movement by myoepithelial cellsresultedfrom a balance between forward movement by luminal cells and restraining movement by myoepithelial cells