Examples of using Atomic resolution in English and their translations into Indonesian
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Colloquial
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Ecclesiastic
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Computer
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Ecclesiastic
I'm a crystallographer, which means I specialize in taking atomic resolution photographs of proteins.
Desired atomic resolution was reached in 2013 and researchers can now routinely.
To image the filament's true structure theteam uses an electron microscope capable of atomic resolution.
The desired atomic resolution was reached in 2013, and researchers can now routinely produce three-dimensional structures of biomolecules.
With MeV-UED, they can unearth crisp images of molecules with unparalleled atomic resolution during these quick reactions.
The desired atomic resolution for the technique was reached in 2013, and researchers have since been using it to produce three-dimensional structures of biomolecules.
Richard Henderson in 1990 used an electronmicroscope to generate a 3D image of a protein at atomic resolution.
Atomic resolution real-space images of isolated, single-layer graphene on SiO 2 substrates are available via scanning tunneling microscopy STM.
In 1990, Richard Henderson was the first to use an electronmicroscope to generate a 3D image of a protein at atomic resolution.
Three-dimensional structures of~160 different integralmembrane proteins have been determined at atomic resolution by X-ray crystallography or nuclear magnetic resonance spectroscopy.
Richard Henderson in 1990 was successful in using an electronmicroscope to generate a 3D image of a protein at atomic resolution.
We hope to finally start understanding the chemistry of these enzymes at atomic resolution, and to modulate their activities to better understand human disease and explore potential biotechnology and biomedical applications.”.
Come 1990, Henderson succeeded in using the electronmicroscope to generate a three-dimensional image of protein at atomic resolution.
We have shown that it's possible to localise hydrogen at atomic resolution-- at the scale of a single atom-- or at a nanometre(less than one-billionth of a metre) scale by combining different technologies in a closed and protected workflow.
The first electron crystallographic protein structure to achieve atomic resolution was bacteriorhodopsin in 1990.
According to the committee's statement, Richard Henderson in 1990 was successful in using an electronmicroscope to generate a three-dimensional image of a protein at atomic resolution.
Scientists have gained a never-before-seen view of nucleation-capturing how the atoms rearrange at 4D atomic resolution(that is, in three dimensions of space and across time).
Using diffraction patterns produced as the X-ray light struck the LMOF samples,Teat applied software tools to map their three-dimensional structure with atomic resolution.
Potential individual research programs include the structure andfunction of proteins at atomic resolution by NMR and X-ray crystallography, the activity of biologically significant enzymes, the regulation of metabolic, stress-related and developmental pathways, and the mechanisms of pathogenicity…[-].
But in 1990, Henderson succeeded in using an electronmicroscope to generate a three-dimensional image of a protein at atomic resolution.
A UCLA-led team has gained a never-before-seen view of nucleation-capturing how the atomsrearrange at 4-D atomic resolution(that is, in three dimensions of space and across time).
Research takes place in a cleanroom laboratory environment and focuses on such topics of current interest as the physics of microelectronics and optoelectronic devices, photonic crystals,and surface physics in atomic resolution…[-].
A UCLA-led team has gained a never-before-seen view of nucleation-capturing how the atoms rearrange at 4D atomic resolution(that is, in three dimensions of space and across time).
The Atomic Scale Physics group at Aalto University headed by Peter Liljeroth specializes on scanning tunneling microscopy(STM), which utilizes a tiny current between a sharp probe tip and a conducting sample to measure structural andelectronic properties of the sample surface with atomic resolution.
A UCLA-led team has gained a never-before-seen view of nucleation-capturing how the atoms rearrange at 4D atomic resolution that is, in three dimensions of….
In 1990, however,Henderson successfully used the technology to produce a three-dimensional image of a protein at atomic resolution.
But in 1990, Henderson succeeded in using an electronmicroscope to generate a three-dimensional image of a protein at atomic resolution.