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Qaagi - Book of Why

Causes

Effects

irreversible adsorption of dimers 10.5506 / APhysPolB.44.937 Zmodyfikowano(passive) created byDomain structure

of several domains where they are considered in a hierarchical pattern(passive) is composedThe domain structure

of fibrous networks(passive) was composedThe domain structure

Using organizational unitsto createdomain structure

resourcesDesigningthe Domain Structure

in an attempt to integrate the IT structures of the two companies(passive) was createdThe domain structure

Setting OutTo DesignThe Domain Structure

to provide a user - friendly guide that can help practitioners first set high - level development priorities(passive) is designedThe domain structure

of predominantly the + c - domain and a small amount of the a - domain(passive) was composedThe domain structure

the instability of the thermodynamic system(passive) caused bydomain structure

in - plane elastic properties ... both in - plane and out - of - plane substrate propertiescan influencethe domain structure

oxygen atoms(passive) caused bythe domain structure

of α - helix that forms a coiled structure when it dimerizes(passive) is composeddomain structure

internal stresses in heterophase solids , Phys(passive) caused byDomain structure

of an α - helix that forms a coiled coil structure when it dimerizes(passive) is composeddomain structure

a better solutionDesigningthe Domain Structure

epitaxial misfit in a nanostructured metallic thin film(passive) caused bythe domain structure

the long rangecausesthe domain structure

nanofiller addition(passive) caused bythe domain structure

that species - specific mutations did not seemto markedly influencedomain structure

in fewer larger domainsusually resultingin fewer larger domains

from the ( 2 × 1 ) periodicity , with domains out of registry by one unit cell along [ 001resultsfrom the ( 2 × 1 ) periodicity , with domains out of registry by one unit cell along [ 001

up correctlysetup correctly

from a structural phase transitionresultingfrom a structural phase transition

in nano domains and broad domain walls with higher mobility as revealed through analysis from HR - TEM and piezoresponse force microscopy ( PFMresultingin nano domains and broad domain walls with higher mobility as revealed through analysis from HR - TEM and piezoresponse force microscopy ( PFM

of a small N - terminal PUA domain , acentral alpha / beta - domain and a C - terminal Rossmann - foldcomposedof a small N - terminal PUA domain , acentral alpha / beta - domain and a C - terminal Rossmann - fold

of six membrane - spanning segments ( S1–S6composedof six membrane - spanning segments ( S1–S6

of a RING fingercomposedof a RING finger

to accommodate part of the spontaneous strain associated with the phase transitioncreatedto accommodate part of the spontaneous strain associated with the phase transition

in a test failureresultingin a test failure

forth in FIGsetforth in FIG

of N - terminal anchor helixcomposedof N - terminal anchor helix

of plural single crystals 2 with ( 111 ) surfacescomposedof plural single crystals 2 with ( 111 ) surfaces

in this manneris createdin this manner

to a decrease of the electric lossesleadsto a decrease of the electric losses

of an N - terminal cysteine rich domain ( CysR ) , a fibronectin type II domain ( FNII ) , eight CTLDs , a transmembrane domain ( TM ) , and a short intracellular C - terminal tail ( ICis composedof an N - terminal cysteine rich domain ( CysR ) , a fibronectin type II domain ( FNII ) , eight CTLDs , a transmembrane domain ( TM ) , and a short intracellular C - terminal tail ( IC

a users SERP selectionwill ... influencea users SERP selection

and reset using orthogonal current pulses ... with a close correlation between the electrical signal and the spatially averaged XMLD over the device centre ... Figcould be ... setand reset using orthogonal current pulses ... with a close correlation between the electrical signal and the spatially averaged XMLD over the device centre ... Fig

of two closely associated SH2 foldscomposedof two closely associated SH2 folds

to gradually varying UHMR particle alignment as seen in ( G ) for a 5 vol % Al2O3 in PVA swellable compositeleadingto gradually varying UHMR particle alignment as seen in ( G ) for a 5 vol % Al2O3 in PVA swellable composite

proteolytic mechanism of active- tionsetproteolytic mechanism of active- tion

grain boundaries , which are almost impossible to removecausesgrain boundaries , which are almost impossible to remove

in improved and ( Figure 4(cresultsin improved and ( Figure 4(c

its ability to dephosphorylate its substratesinfluencesits ability to dephosphorylate its substrates

difference in their adhesion activity compared to pVWFcausesdifference in their adhesion activity compared to pVWF

during the preceding electrical treatmentcreatedduring the preceding electrical treatment

BY IRREVERSIBLE ADSORPTION OF DIMERSCREATEDBY IRREVERSIBLE ADSORPTION OF DIMERS

from the pilot testresultedfrom the pilot test

differences in the magnetic field modulation of the critical current of Josephson junctions fabricated on orthogonal faces of Sr2RuO4 single crystalscreatesdifferences in the magnetic field modulation of the critical current of Josephson junctions fabricated on orthogonal faces of Sr2RuO4 single crystals

using titanium indiffusion in lithium niobatewas createdusing titanium indiffusion in lithium niobate

from slowly cooled meltsresultingfrom slowly cooled melts

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