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The sequence length, as well as absence of both disulphide bonds and a signal peptide, correlates with the general properties of type I cysteine peptidase inhibitors (stefins).
Other types, such as Types Ib and Ic, are unusual supernovas that have most of the properties of type II supernovas.
We study the mechanical properties of Type I collagen embedded with graphene nanoribbons (GNRs) as an important template employed in tissue repair.
Recent areas of interest are properties of Type II superconducting cores of neutron stars, nonlinear development of the r-mode instability of neutron stars and implications for their maximum spin rate, cosmological observations in the inhomogeneous universe, and the birthplaces of cosmic rays.
It was found that coarse niobium carbides deteriorated the ductile fracture resistance, so that more rigorous specification is needed in carbon and niobium contents to improve fracture properties of Type 347 stainless steels.
This chapter examines the engineering properties of Type X gypsum board and aims to measure these properties and organize them into a rational failure theory that will allow engineering design of gypsum board fire barriers.
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An alternative method is proposed and implemented to calculate electronic structure and quantum transport properties of type-II heterojunctions.
The thermoelectric properties of type-III clathrate compounds, Ba24GaXGe100−X, have been investigated as a function of Ga content and temperature.
I perform a detailed theoretical study of the characteristic electronic structures and optical properties of type-II CdTe/CdSe core/shell nanocrystals of the experimentally relevant dimensions by means of atomistic sp3s∗ empirical tight-binding theory (TB) and configuration interaction description (CI) with the aim to evidently understand the significance of the CdSe growth shell.
In this work, we investigated the structural and optical properties of type-II GaSb/InGaAs QDs grown on InP (100) substrate using molecular beam epitaxy [MBE].
We have investigated the structural and optical properties of type-II GaSb/InGaAs quantum dots [QDs] grown on InP (100) substrate by molecular beam epitaxy.
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