repair materials - перевод на русский
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repair materials - перевод на русский

MATTER WHICH HAS THE ABILITY TO CHANGE ITS PHYSICAL PROPERTIES IN A PROGRAMMABLE FASHION, BASED UPON USER INPUT OR AUTONOMOUS SENSING
Reconfigurable materials; Programmable materials
  • A 'simple' programmable matter where the programmable element is external to the material itself. Magnetized non-Newtonian fluid, forming support columns which resist impacts and sudden pressure.
Найдено результатов: 738
repair materials      

дорожное дело

материалы для ремонтных работ

repair materials      
материалы для ремонтных работ
materials science         
  • [[Buckminsterfullerene]] nanostructure
  • A [[scanning electron microscopy]] image of carbon nanotubes bundles
  • A 6 μm diameter carbon filament (running from bottom left to top right) siting atop the much larger human hair
  • Beverage containers of all three materials types: ceramic (glass), metal (aluminum), and polymer (plastic).
  • A phase diagram for a binary system displaying a eutectic point
  • Expanded polystyrene polymer packaging
  • solid state physics]]”.
  • Six classes of conventional engineering materials
  • The materials paradigm represented in the form of a tetrahedron
  • The iridescent [[nacre]] inside a [[nautilus]] shell
  • Microstructure of pearlite
  • doi= 10.1021/cm9801901}}</ref>
  • The repeating unit of the polymer polypropylene
  • Si<sub>3</sub>N<sub>4</sub> ceramic bearing parts
  • doi-access=free }}</ref>
  • Wire rope made from [[steel]] alloy
  • A late [[Bronze Age sword]] or dagger blade
RESEARCH, DISCOVERY AND DESIGN OF PHYSICAL MATERIALS (ESPECIALLY SOLIDS)
Materials Science; Material science; Materials engineering; Material engineering; Materials Science and Technology; Material Science; Material Engineering; Matsci; Materials engineer; Advanced material; Materials science and engineering; Materials scientist; Engineered materials; Material sciences; Metallurgy & Materials Engineering; Materials Science & Engineering; Materials research; Materials Chemistry; Materials physics; Materials Technology; Materials technology; Materials Scientist; Material scientist; Materials chemistry; Materials Engineering; Engineering materials; Materials Science Engineering; Materials science engineering; Materials sciences; Digital materials; Material Science and Engineering; Digital Materials; Material Sciences; Material chemistry; Material physics; Science of Materials; Engineering material; Science of materials; Modern materials

[mə'ti(ə)riəlzsaiəns]

специальный термин

материаловедение

наука о материалах

double-strand break         
  • DNA ligase, shown above repairing chromosomal damage, is an enzyme that joins broken nucleotides together by catalyzing the formation of an internucleotide [[ester]] bond between the phosphate backbone and the deoxyribose nucleotides.
  • A chart of common DNA damaging agents, examples of lesions they cause in DNA, and pathways used to repair these lesions. Also shown are many of the genes in these pathways, an indication of which genes are epigenetically regulated to have reduced (or increased) expression in various cancers. It also shows genes in the error-prone microhomology-mediated end joining pathway with increased expression in various cancers.
  • Most life span influencing genes affect the rate of DNA damage.
  • DNA repair rate is an important determinant of cell pathology.
  • The main double-strand break repair pathways
  • url=}}</ref>
  • Paul Modrich talks about himself and his work in DNA repair.
  • Structure of the base-excision repair enzyme [[uracil-DNA glycosylase]] excising a hydrolytically-produced uracil residue from DNA. The uracil residue is shown in yellow.
PROCESS OF RESTORING DNA AFTER DAMAGE
Dna repair; DNA Repair; DNA damage; DNA repair genes; Excision repair; Excision repair mechanism; Dna repair enzymes; Dna repair-deficiency disorders; Dna repair genes; Double-strand breaks; Double-strand break; Types of DNA lesions; Double strand breaks; Translesion synthesis; DNA damage checkpoint; Double strand break; Self-repair mechanisms; DNA repair gene; Single strand break; Single-strand break; DNA damage checkpoints; DNA lesions; DNA lesion; Translesion; Translation polymerase; DNA-damage response; DNA repair-deficiency disorders; Translesion DNA synthesis; Double-stranded break; Single-stranded break; DNA damage repair

общая лексика

двухнитевой разрыв (ДНК)

engineering materials         
  • [[Buckminsterfullerene]] nanostructure
  • A [[scanning electron microscopy]] image of carbon nanotubes bundles
  • A 6&nbsp;μm diameter carbon filament (running from bottom left to top right) siting atop the much larger human hair
  • Beverage containers of all three materials types: ceramic (glass), metal (aluminum), and polymer (plastic).
  • A phase diagram for a binary system displaying a eutectic point
  • Expanded polystyrene polymer packaging
  • solid state physics]]”.
  • Six classes of conventional engineering materials
  • The materials paradigm represented in the form of a tetrahedron
  • The iridescent [[nacre]] inside a [[nautilus]] shell
  • Microstructure of pearlite
  • doi= 10.1021/cm9801901}}</ref>
  • The repeating unit of the polymer polypropylene
  • Si<sub>3</sub>N<sub>4</sub> ceramic bearing parts
  • doi-access=free }}</ref>
  • Wire rope made from [[steel]] alloy
  • A late [[Bronze Age sword]] or dagger blade
RESEARCH, DISCOVERY AND DESIGN OF PHYSICAL MATERIALS (ESPECIALLY SOLIDS)
Materials Science; Material science; Materials engineering; Material engineering; Materials Science and Technology; Material Science; Material Engineering; Matsci; Materials engineer; Advanced material; Materials science and engineering; Materials scientist; Engineered materials; Material sciences; Metallurgy & Materials Engineering; Materials Science & Engineering; Materials research; Materials Chemistry; Materials physics; Materials Technology; Materials technology; Materials Scientist; Material scientist; Materials chemistry; Materials Engineering; Engineering materials; Materials Science Engineering; Materials science engineering; Materials sciences; Digital materials; Material Science and Engineering; Digital Materials; Material Sciences; Material chemistry; Material physics; Science of Materials; Engineering material; Science of materials; Modern materials

строительное дело

конструкционные материалы

excision repair         
  • DNA ligase, shown above repairing chromosomal damage, is an enzyme that joins broken nucleotides together by catalyzing the formation of an internucleotide [[ester]] bond between the phosphate backbone and the deoxyribose nucleotides.
  • A chart of common DNA damaging agents, examples of lesions they cause in DNA, and pathways used to repair these lesions. Also shown are many of the genes in these pathways, an indication of which genes are epigenetically regulated to have reduced (or increased) expression in various cancers. It also shows genes in the error-prone microhomology-mediated end joining pathway with increased expression in various cancers.
  • Most life span influencing genes affect the rate of DNA damage.
  • DNA repair rate is an important determinant of cell pathology.
  • The main double-strand break repair pathways
  • url=}}</ref>
  • Paul Modrich talks about himself and his work in DNA repair.
  • Structure of the base-excision repair enzyme [[uracil-DNA glycosylase]] excising a hydrolytically-produced uracil residue from DNA. The uracil residue is shown in yellow.
PROCESS OF RESTORING DNA AFTER DAMAGE
Dna repair; DNA Repair; DNA damage; DNA repair genes; Excision repair; Excision repair mechanism; Dna repair enzymes; Dna repair-deficiency disorders; Dna repair genes; Double-strand breaks; Double-strand break; Types of DNA lesions; Double strand breaks; Translesion synthesis; DNA damage checkpoint; Double strand break; Self-repair mechanisms; DNA repair gene; Single strand break; Single-strand break; DNA damage checkpoints; DNA lesions; DNA lesion; Translesion; Translation polymerase; DNA-damage response; DNA repair-deficiency disorders; Translesion DNA synthesis; Double-stranded break; Single-stranded break; DNA damage repair
эксцизионная репарация, восстановление путём удаления повреждённого участка (молекулы ДНК)
engineering material         
  • [[Buckminsterfullerene]] nanostructure
  • A [[scanning electron microscopy]] image of carbon nanotubes bundles
  • A 6&nbsp;μm diameter carbon filament (running from bottom left to top right) siting atop the much larger human hair
  • Beverage containers of all three materials types: ceramic (glass), metal (aluminum), and polymer (plastic).
  • A phase diagram for a binary system displaying a eutectic point
  • Expanded polystyrene polymer packaging
  • solid state physics]]”.
  • Six classes of conventional engineering materials
  • The materials paradigm represented in the form of a tetrahedron
  • The iridescent [[nacre]] inside a [[nautilus]] shell
  • Microstructure of pearlite
  • doi= 10.1021/cm9801901}}</ref>
  • The repeating unit of the polymer polypropylene
  • Si<sub>3</sub>N<sub>4</sub> ceramic bearing parts
  • doi-access=free }}</ref>
  • Wire rope made from [[steel]] alloy
  • A late [[Bronze Age sword]] or dagger blade
RESEARCH, DISCOVERY AND DESIGN OF PHYSICAL MATERIALS (ESPECIALLY SOLIDS)
Materials Science; Material science; Materials engineering; Material engineering; Materials Science and Technology; Material Science; Material Engineering; Matsci; Materials engineer; Advanced material; Materials science and engineering; Materials scientist; Engineered materials; Material sciences; Metallurgy & Materials Engineering; Materials Science & Engineering; Materials research; Materials Chemistry; Materials physics; Materials Technology; Materials technology; Materials Scientist; Material scientist; Materials chemistry; Materials Engineering; Engineering materials; Materials Science Engineering; Materials science engineering; Materials sciences; Digital materials; Material Science and Engineering; Digital Materials; Material Sciences; Material chemistry; Material physics; Science of Materials; Engineering material; Science of materials; Modern materials

общая лексика

машиностроительный материал

science of materials         
  • [[Buckminsterfullerene]] nanostructure
  • A [[scanning electron microscopy]] image of carbon nanotubes bundles
  • A 6&nbsp;μm diameter carbon filament (running from bottom left to top right) siting atop the much larger human hair
  • Beverage containers of all three materials types: ceramic (glass), metal (aluminum), and polymer (plastic).
  • A phase diagram for a binary system displaying a eutectic point
  • Expanded polystyrene polymer packaging
  • solid state physics]]”.
  • Six classes of conventional engineering materials
  • The materials paradigm represented in the form of a tetrahedron
  • The iridescent [[nacre]] inside a [[nautilus]] shell
  • Microstructure of pearlite
  • doi= 10.1021/cm9801901}}</ref>
  • The repeating unit of the polymer polypropylene
  • Si<sub>3</sub>N<sub>4</sub> ceramic bearing parts
  • doi-access=free }}</ref>
  • Wire rope made from [[steel]] alloy
  • A late [[Bronze Age sword]] or dagger blade
RESEARCH, DISCOVERY AND DESIGN OF PHYSICAL MATERIALS (ESPECIALLY SOLIDS)
Materials Science; Material science; Materials engineering; Material engineering; Materials Science and Technology; Material Science; Material Engineering; Matsci; Materials engineer; Advanced material; Materials science and engineering; Materials scientist; Engineered materials; Material sciences; Metallurgy & Materials Engineering; Materials Science & Engineering; Materials research; Materials Chemistry; Materials physics; Materials Technology; Materials technology; Materials Scientist; Material scientist; Materials chemistry; Materials Engineering; Engineering materials; Materials Science Engineering; Materials science engineering; Materials sciences; Digital materials; Material Science and Engineering; Digital Materials; Material Sciences; Material chemistry; Material physics; Science of Materials; Engineering material; Science of materials; Modern materials

общая лексика

материаловедческий

материаловедение

single-strand break         
  • DNA ligase, shown above repairing chromosomal damage, is an enzyme that joins broken nucleotides together by catalyzing the formation of an internucleotide [[ester]] bond between the phosphate backbone and the deoxyribose nucleotides.
  • A chart of common DNA damaging agents, examples of lesions they cause in DNA, and pathways used to repair these lesions. Also shown are many of the genes in these pathways, an indication of which genes are epigenetically regulated to have reduced (or increased) expression in various cancers. It also shows genes in the error-prone microhomology-mediated end joining pathway with increased expression in various cancers.
  • Most life span influencing genes affect the rate of DNA damage.
  • DNA repair rate is an important determinant of cell pathology.
  • The main double-strand break repair pathways
  • url=}}</ref>
  • Paul Modrich talks about himself and his work in DNA repair.
  • Structure of the base-excision repair enzyme [[uracil-DNA glycosylase]] excising a hydrolytically-produced uracil residue from DNA. The uracil residue is shown in yellow.
PROCESS OF RESTORING DNA AFTER DAMAGE
Dna repair; DNA Repair; DNA damage; DNA repair genes; Excision repair; Excision repair mechanism; Dna repair enzymes; Dna repair-deficiency disorders; Dna repair genes; Double-strand breaks; Double-strand break; Types of DNA lesions; Double strand breaks; Translesion synthesis; DNA damage checkpoint; Double strand break; Self-repair mechanisms; DNA repair gene; Single strand break; Single-strand break; DNA damage checkpoints; DNA lesions; DNA lesion; Translesion; Translation polymerase; DNA-damage response; DNA repair-deficiency disorders; Translesion DNA synthesis; Double-stranded break; Single-stranded break; DNA damage repair

общая лексика

однонитевой разрыв (ДНК)

engineering materials         
  • [[Buckminsterfullerene]] nanostructure
  • A [[scanning electron microscopy]] image of carbon nanotubes bundles
  • A 6&nbsp;μm diameter carbon filament (running from bottom left to top right) siting atop the much larger human hair
  • Beverage containers of all three materials types: ceramic (glass), metal (aluminum), and polymer (plastic).
  • A phase diagram for a binary system displaying a eutectic point
  • Expanded polystyrene polymer packaging
  • solid state physics]]”.
  • Six classes of conventional engineering materials
  • The materials paradigm represented in the form of a tetrahedron
  • The iridescent [[nacre]] inside a [[nautilus]] shell
  • Microstructure of pearlite
  • doi= 10.1021/cm9801901}}</ref>
  • The repeating unit of the polymer polypropylene
  • Si<sub>3</sub>N<sub>4</sub> ceramic bearing parts
  • doi-access=free }}</ref>
  • Wire rope made from [[steel]] alloy
  • A late [[Bronze Age sword]] or dagger blade
RESEARCH, DISCOVERY AND DESIGN OF PHYSICAL MATERIALS (ESPECIALLY SOLIDS)
Materials Science; Material science; Materials engineering; Material engineering; Materials Science and Technology; Material Science; Material Engineering; Matsci; Materials engineer; Advanced material; Materials science and engineering; Materials scientist; Engineered materials; Material sciences; Metallurgy & Materials Engineering; Materials Science & Engineering; Materials research; Materials Chemistry; Materials physics; Materials Technology; Materials technology; Materials Scientist; Material scientist; Materials chemistry; Materials Engineering; Engineering materials; Materials Science Engineering; Materials science engineering; Materials sciences; Digital materials; Material Science and Engineering; Digital Materials; Material Sciences; Material chemistry; Material physics; Science of Materials; Engineering material; Science of materials; Modern materials
конструкционные материалы

Определение

labor and materials
(time and materials) n. what some builders or repair people contract to provide and be paid for, rather than a fixed price or a percentage of the costs. In many states, if the person performing the work is not a licensed contractor, he/she is limited to labor and materials in any lawsuit for contract payment, and may not receive a profit above that amount. Consumers who believe they will get a better deal from someone working for labor or time and materials should beware and watch receipts and keep track of actual labor hours worked.

Википедия

Programmable matter

Programmable matter is matter which has the ability to change its physical properties (shape, density, moduli, conductivity, optical properties, etc.) in a programmable fashion, based upon user input or autonomous sensing. Programmable matter is thus linked to the concept of a material which inherently has the ability to perform information processing.

Как переводится repair materials на Русский язык