mechanically deformable photoconductive layer - translation to russian
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mechanically deformable photoconductive layer - translation to russian

MOLECULES OR IONS THAT ARE CONNECTED AS A CONSEQUENCE OF THEIR TOPOLOGY
Mechanical bond; Residual topology; Mechanically-interlocked molecular architecture; Mechanically-interlocked molecular architectures; Mechanically interlocked molecular architecture

mechanically deformable photoconductive layer      
механически деформируемый фотополупроводниковый слой
network layer         
LAYER 3 OF THE OSI MODEL FOR COMPUTER COMMUNICATION
Layer 3; OSI layer 3; Internetwork layer; Network layers; OSI Layer 3; Network Layer; Network-layer; Layer-3

общая лексика

сетевой уровень

третий снизу из семи уровней в эталонной модели OSI. Реализует функции маршрутизации пакетов, обработки ошибок, мультиплексирования пакетов и управления потоками данных. Если пакет адресуется рабочей станции в той же ЛВС, то он пересылается непосредственно, если он должен быть передан другой сети, то пакет пересылается на маршрутизирующее устройство. Самые известные протоколы этого уровня: IPX (в сетях NetWare), IP (в сетях TCP/IP) и X.25 (в сетях с коммутацией пакетов)

session layer         
PART OF SEVEN-LAYER COMPUTER NETWORKING MODEL
OSI layer 5; X.215; Layer 5; OSI Layer 5; Session Layer; Session-layer

общая лексика

сеансовый уровень, редко уровень сессии

пятый из семи уровней модели OSI. Предоставляет услуги по координации и синхронизации обмена данными между приложениями (т.е. между процессами уровня представления данных). Координация требуется, если одна система работает медленнее другой или пакеты передаются не в том порядке. На этом уровне к пакетам добавляется информация, которую используют коммуникационные протоколы

Смотрите также

application layer; data link layer; network layer; physical layer; presentation layer; transport layer

Wikipedia

Mechanically interlocked molecular architectures

In chemistry, mechanically-interlocked molecular architectures (MIMAs) are molecules that are connected as a consequence of their topology. This connection of molecules is analogous to keys on a keychain loop. The keys are not directly connected to the keychain loop but they cannot be separated without breaking the loop. On the molecular level, the interlocked molecules cannot be separated without the breaking of the covalent bonds that comprise the conjoined molecules; this is referred to as a mechanical bond. Examples of mechanically interlocked molecular architectures include catenanes, rotaxanes, molecular knots, and molecular Borromean rings. Work in this area was recognized with the 2016 Nobel Prize in Chemistry to Bernard L. Feringa, Jean-Pierre Sauvage, and J. Fraser Stoddart.

The synthesis of such entangled architectures has been made efficient by combining supramolecular chemistry with traditional covalent synthesis, however mechanically interlocked molecular architectures have properties that differ from both "supramolecular assemblies" and "covalently bonded molecules". The terminology "mechanical bond" has been coined to describe the connection between the components of mechanically interlocked molecular architectures. Although research into mechanically interlocked molecular architectures is primarily focused on artificial compounds, many examples have been found in biological systems including: cystine knots, cyclotides or lasso-peptides such as microcin J25 which are proteins, and a variety of peptides.

What is the Russian for mechanically deformable photoconductive layer? Translation of &#39mechanical