impurity activation - definição. O que é impurity activation. Significado, conceito
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O que (quem) é impurity activation - definição

DOPANT ATOM THAT, WHEN ADDED TO A SEMICONDUCTOR, CAN FORM A P-TYPE REGION
Acceptor atom; Acceptor impurity; Trivalent impurity

CRISPR activation         
  • The dCas9-VPR activator increases transcription at the gene that it targets.
  • The use of the Suntag system allows multiple antibodies fused to VP64 to bind to dCas9-Suntag. That in turn recruits RNA polymerase and increases gene expression.
  • The dCas-SAM system uses msgRNA that has attached aptamers for different transcriptional factors (MS2,p65 and HSF1) to bind.
  • Complementary base pairing between the sgRNA and genomic DNA allows targeting of Cas9 or dCas9
PROGRAMMABLE TRANSCRIPTIONAL ACTIVATOR
User:Mjlink/sandbox; DCas9 Activation Systems; DCas9; SunTag; DCas9 activation system
CRISPR activation (CRISPRa) is a type of CRISPR tool that uses modified versions of CRISPR effectors without endonuclease activity, with added transcriptional activators on dCas9 or the guide RNAs (gRNAs).
Impurity (disambiguation)         
WIKIMEDIA DISAMBIGUATION PAGE
Impurity (album)
An impurity is a substance inside a confined amount of liquid, gas, or solid, which differs from the chemical composition of the material or compound.
Automatic activation device         
  • [[CYPRES]] II panel
DEVICE THAT AUTOMATICALLY OPENS A PARACHUTE
Automatic Activation Device
In skydiving, an automatic activation device (AAD) is a dead man's switch consisting of an electronic-pyrotechnic or mechanical device that automatically opens the main or reserve parachute container at a preset altitude or after a preset time.

Wikipédia

Acceptor (semiconductors)

In semiconductor physics, an acceptor is a dopant atom that when substituted into a semiconductor lattice forms a p-type region.

When silicon (Si), having four valence electrons, is doped with elements from group III of the periodic table, such as boron (B) and aluminium (Al), both having three valence electrons, a p-type semiconductor is formed. These dopant elements represent trivalent impurities. Other trivalent dopants include indium (In) and gallium (Ga).

When substituting for a silicon atom in the crystal lattice, the three valence electrons of boron form covalent bonds with three of the Si neighbours but the bond with the fourth remains unsatisfied. The initially electro-neutral acceptor becomes negatively charged (ionised). The unsatisfied bond attracts electrons from the neighbouring bonds. At room temperature, an electron from a neighbouring bond can jump to repair the unsatisfied bond thus leaving an electron hole, which is a place where an electron is deficient. The hole, being positively charged, attracts another electron from a neighbouring bond to repair this unsatisfied bond. This chain-like process results in the hole moving around the crystal as a charge carrier. This process can sustain in an electric current useful in electronic circuits.