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Qaagi - Book of Why

Causes

Effects

Temperature needed for the alteration process ... temperatureswould causestructural reorganization.[2

temperatureswould causestructural reorganization.[2

temperatureswould causestructural reorganization.[3

the floodingcausingstructural damage.[8

while the larger cannon might be loaded with a single heavy cannonballto causestructural damage.[6

the proteincan influenceneuronal structural plasticity

cortex stimulationmight influencesynaptic structural plasticity

The chain length of the bonded material ... strong enoughto causestructural deconformation

custom(passive) are ... designedStructural mezzanines

changes in upstream and downstream processes during recombinant production of biologicsinfluencestructural heterogeneity

high shock loadscausingstructural deformations

These changescausestructural instabilities

by internal pressures or heating of the metal(passive) caused bystructural deformations

by internal pressures or heating of the metal (passive) caused bystructural deformations

temperature and gravity(passive) caused bystructural deformations

by aerodynamic load variations(passive) caused bystructural deformations

Mutationscausestructural instabilities

by temperature fluctuation , gravity , wind , seismic activity , and other vibrations(passive) caused bystructural deformations

temperature fluctuation , gravity , wind , seismic activity , and other vibrations(passive) caused bystructural deformations

by lack of repairs(passive) caused bystructural instabilities

the lack of repairs(passive) caused bystructural instabilities

while 31 mutations were foundto causestructural instabilities

by compression or vibration(passive) caused bystructural deformations

This traumawill causestructural instabilities

the presence of pores of different sizes , shapes and how they are interconnected(passive) is caused byStructural heterogeneity

Minute changes in temperature , pressure , and acceleration environmentscausestructural deformations

Post - injury behavioral trainingcan influencestructural plasticity

salt domes and other intrusive(passive) caused byStructural deformations

mutationsmay causestructural rearrangements

by the factors(passive) caused bystructural rearrangements

genetics(passive) caused byStructural inflexibility

by metal - ion binding(passive) caused bystructural rearrangements

their receptorscausestructural rearrangements

by aircraft impact(passive) caused bystructural fireproofing

by ectopic recombination of TEs(passive) caused byStructural rearrangements

regulatory chromatin remodeling factors(passive) caused bystructural rearrangements

by regulatory chromatin remodeling factors(passive) caused bystructural rearrangements

Altered packingcausesstructural rearrangement

by Tenant(passive) caused bystructural penetrations

covalent , directional bondscausestructural planarity

to restoration of functionleadingto restoration of function

in resistancecan resultin resistance

birth defectscausingbirth defects

in cognitive impairmentresultsin cognitive impairment

of nanoscale ceramicscomposedof nanoscale ceramics

, potentiallyleading, potentially

in membrane fusionresultin membrane fusion

in cancerresultin cancer

to in - frame deletions in the extracellular domain of the receptorleadingto in - frame deletions in the extracellular domain of the receptor

from chromosome breakageResultfrom chromosome breakage

an aerodynamic loads changingcausean aerodynamic loads changing

to duplications or deletions in recombination productsleadto duplications or deletions in recombination products

alsomay ... resultalso

to back painleadingto back pain

in e.g.resultingin e.g.

the rules of synaptic plasticityinfluencesthe rules of synaptic plasticity

to long - lasting alterations in neuronal connectivitycontributesto long - lasting alterations in neuronal connectivity

loss or gaincausingloss or gain

to the opening of hAQP10leadingto the opening of hAQP10

to strain in the protein network , which drives a return of the cell to its original biconcave shapeleadto strain in the protein network , which drives a return of the cell to its original biconcave shape

to an increase ( decrease ) of the number of synapses during phases of high ( low ) neuronal activity and ( ii ) homeostatic structural plasticity , which balances these changes by removing and adding synapsesleadsto an increase ( decrease ) of the number of synapses during phases of high ( low ) neuronal activity and ( ii ) homeostatic structural plasticity , which balances these changes by removing and adding synapses

to subsequent proton transfer processesleadingto subsequent proton transfer processes

to binding of ( porphinato)iron cofactorscould leadto binding of ( porphinato)iron cofactors

in viral polypeptides being inserted into this tunnelresultin viral polypeptides being inserted into this tunnel

to damageleadingto damage

from recombinationresultingfrom recombination

during redirection line of therapy and Maltese Reggieprimarily involve setduring redirection line of therapy and Maltese Reggie

for high wind load and long span conditionsdesignedfor high wind load and long span conditions

holes and thermal bridgingcauseholes and thermal bridging

from a mismatch between worker qualifications andresultsfrom a mismatch between worker qualifications and

to dysfunction that will be amplified during runningmay contributeto dysfunction that will be amplified during running

to political turmoil , domestic unrest , and economic collapseledto political turmoil , domestic unrest , and economic collapse

pelvic obliquity in the frontal plane and lumbar scoliosis with convexity toward the shorter extremity [ 18 , 19causepelvic obliquity in the frontal plane and lumbar scoliosis with convexity toward the shorter extremity [ 18 , 19

from focused crustal shortening as a driving mechanism for orogen - parallel flowresultingfrom focused crustal shortening as a driving mechanism for orogen - parallel flow

to abnormalities in muscle functionleadingto abnormalities in muscle function

to support the roof load , weight & wind loaddesignedto support the roof load , weight & wind load

capacity issuescausecapacity issues

The species - specific mechanisms(passive) are caused byThe species - specific mechanisms

with the best materials in the industry and enhanced for maximum endurance , longevity , and qualitydesignedwith the best materials in the industry and enhanced for maximum endurance , longevity , and quality

National Category Control EngineeringresultsNational Category Control Engineering

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