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These hybrid models consist of a framework of dynamic mass and energy balances, supplemented with fuzzy submodels describing additional equations, such as mass transformation and transfer rates.
In their liturgies both Anglicanism and Lutheranism work within the framework of the mass, adopting certain elements and rejecting others; the liturgical movements in both traditions during the 19th and 20th centuries restored additional elements, even though theological interpretations of the Lord's Supper continued to display great variety.
In the framework of effective mass envelope function theory, the electronic structures of GaAs/Al x Ga1-x As quantum double rings (QDRs) are studied.
Within the framework of effective mass approximation, the Hamiltonian description of an electron in the presence of an external field and hydrogenic impurity is given as Ĥ = Ĥ 0 − e 2 ε | r − r i | (1) Figure 1 Typical cross section of symmetric InGaN/GaN multiple quantum dots.
In the previous section, we have described a basic model model for the production of proteins, in the framework of the mass action law.
For certain problem instances, such as very large mass values (above 400,000 Da) or mass range span larger than 1 Da, the Round Robin algorithm is not suitable and CDK falls back to an optimized full enumeration search method, originally developed as part of the MZmine 2 framework for mass spectrometry data processing [54, 55].
The quantum confinement and coupling of electrons are considered in the framework of effective-mass envelope-function theory.
The binding energy of ground state for hydrogenic impurity in multiple quantum dots is calculated in the framework of effective-mass approximation and using a variational method.
The Rashba spin-orbit splitting of a hydrogenic donor impurity in GaAs/GaAlAs quantum wells is investigated theoretically in the framework of effective-mass envelope function theory.
In this paper, we will study the electronic structures and binding energy of a hydrogenic acceptor impurity in semiconductor nano-structures in the framework of effective-mass envelope-function theory.
In summary, we have calculated the electronic structures and binding energy levels of a hydrogenic acceptor impurity in 2, 1, and 0-dimensional semiconductor nano-structures in the framework of effective-mass envelope-function theory.
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