Sentence examples for grow atom from inspiring English sources

Exact(2)

User experience and how that can be employed to grow Atom's customer base are essentially the areas Grasp will be working on as part of Atom.

User experience and how that can be employed to grow Atom's customer base are essentially the areas Grasp will be working on as part of Atom.

Similar(58)

These jewels, which are created when a small diamond seed is placed in an carbon-rich environment, grow atom-by-atom, layer-by-layer.

A model for cathodic crystal growth of metals by direct transfer of depositing metal ions at kink sites formed by the creation of growing atom rows in self-perpetuating crystal steps due to emerging screw dislocations, is found to yield both transient and steady-state expectations approaching observations on the iron-group metals.

Graphene can currently be grown atom-by-atom via a process called chemical vapour deposition.

Phaedon Avouris, a physicist at the IBM research center in Yorktown Heights, New York, believes that the technique will be useful to map out the elastic properties of tiny structures that are grown literally atom by atom.

Intense red emission is achieved in silicon nanocrystals (SiNCs) grown by atom beam sputtering (ABS) followed by ion beam irradiation (IBI).

Homopolymer brushes of poly(N,N-dimethylacrylamide) (PDMA), poly methoxyethylacrylamide) (PMEA) and poly N-isopropylacrylamide)(poly N-isopropylacrylamidesfer radical PNIPAMrization (ATRP) initiator functionalized latex particles were used as macroinitiators for the synthesis of PDMA-b-PNIPAM/PMEA, PMEA-b-PDMA/PNIPAM and PNIPAM-b-PDMA block copolymer brushes by surface initiated aqueous ATRP.

Synthesis and characterization of nano-crystalline silicon grown by atom beam sputtering technique are reported.

Next, a high-quality 8-nm-thickness HfO2 resistive switching layer was grown by atom layer deposition (ALD) technology, which has the advantage of well controlling on the deposition parameters and excellent deposition uniformity.

They observed the formation of amorphous nano-clusters after RTA up to a temperature of 900°C in N2 environment for 1 min. In this letter, we report synthesis of highly luminescent and nearly mono-dispersed silicon nano-crystals in silicon oxide matrix grown by atom beam stuttering followed by RTA.

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