Semiempirical Methods of Electronic Structure Calculation

Semiempirical Methods of Electronic Structure Calculation PDF Author: Gerald Segal
Publisher: Springer Science & Business Media
ISBN: 1468425595
Category : Science
Languages : en
Pages : 319

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Book Description
If one reflects upon the range of chemical problems accessible to the current quantum theoretical methods for calculations on the electronic structure of molecules, one is immediately struck by the rather narrow limits imposed by economic and numerical feasibility. Most of the systems with which experimental photochemists actually work are beyond the grasp of ab initio methods due to the presence of a few reasonably large aromatic ring systems. Potential energy surfaces for all but the smallest molecules are extremely expensive to produce, even over a restricted group of the possible degrees of freedom, and molecules containing the higher elements of the periodic table remain virtually untouched due to the large numbers of electrons involved. Almost the entire class of molecules of real biological interest is simply out of the question. In general, the theoretician is reduced to model systems of variable appositeness in most of these fields. The fundamental problem, from a basic computational point of view, is that large molecules require large numbers of basis functions, whether Slater type orbitals or Gaussian functions suitably contracted, to provide even a modestly accurate description of the molecular electronic environment. This leads to the necessity of dealing with very large matrices and numbers of integrals within the Hartree-Fock approximation and quickly becomes both numerically difficult and uneconomic.

Semiempirical Methods of Electronic Structure Calculation

Semiempirical Methods of Electronic Structure Calculation PDF Author: Gerald Segal
Publisher: Springer Science & Business Media
ISBN: 1468425595
Category : Science
Languages : en
Pages : 319

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Book Description
If one reflects upon the range of chemical problems accessible to the current quantum theoretical methods for calculations on the electronic structure of molecules, one is immediately struck by the rather narrow limits imposed by economic and numerical feasibility. Most of the systems with which experimental photochemists actually work are beyond the grasp of ab initio methods due to the presence of a few reasonably large aromatic ring systems. Potential energy surfaces for all but the smallest molecules are extremely expensive to produce, even over a restricted group of the possible degrees of freedom, and molecules containing the higher elements of the periodic table remain virtually untouched due to the large numbers of electrons involved. Almost the entire class of molecules of real biological interest is simply out of the question. In general, the theoretician is reduced to model systems of variable appositeness in most of these fields. The fundamental problem, from a basic computational point of view, is that large molecules require large numbers of basis functions, whether Slater type orbitals or Gaussian functions suitably contracted, to provide even a modestly accurate description of the molecular electronic environment. This leads to the necessity of dealing with very large matrices and numbers of integrals within the Hartree-Fock approximation and quickly becomes both numerically difficult and uneconomic.

Semiempirical Methods of Electronic Structure Calculation

Semiempirical Methods of Electronic Structure Calculation PDF Author: Gerald Segal
Publisher: Springer Science & Business Media
ISBN: 1468425560
Category : Science
Languages : en
Pages : 285

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Book Description
If one reflects upon the range of chemical problems accessible to the current quantum theoretical methods for calculations on the electronic structure of molecules, one is immediately struck by the rather narrow limits imposed by economic and numerical feasibility. Most of the systems with which experimental photochemists actually work are beyond the grasp of ab initio methods due to the presence of a few reasonably large aromatic ring systems. Potential energy surfaces for all but the smallest molecules are extremely expensive to produce, even over a restricted group of the possible degrees of freedom, and molecules containing the higher elements of the periodic table remain virtually untouched due to the large numbers of electrons involved. Almost the entire class of molecules of real biological interest is simply out of the question. In general, the theoretician is reduced to model systems of variable appositeness in most of these fields. The fundamental problem, from a basic computational point of view, is that large molecules require large numbers of basis functions, whether Slater type orbitals or Gaussian functions suitably contracted, to provide even a modestly accurate description of the molecular electronic environment. This leads to the necessity of dealing with very large matrices and numbers of integrals within the Hartree-Fock approximation and quickly becomes both numerically difficult and uneconomic.

Semiempirical Methods of Electronic Structure Calculation

Semiempirical Methods of Electronic Structure Calculation PDF Author: Gerald A. Segal
Publisher:
ISBN:
Category : Molecular orbitals
Languages : en
Pages :

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Semiempirical Methods of Electronic Structure Calculation. Pt. A. Techniques

Semiempirical Methods of Electronic Structure Calculation. Pt. A. Techniques PDF Author: G.A. Segal
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Semiempirical Methods of Electronic Structure Calculation. Pt. B. Applications

Semiempirical Methods of Electronic Structure Calculation. Pt. B. Applications PDF Author: G.A. Segal
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Semiempirical Methods of Electronic Structure Calculation

Semiempirical Methods of Electronic Structure Calculation PDF Author: Gerald Segal
Publisher: Springer
ISBN: 9780306335075
Category : Science
Languages : en
Pages : 274

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Book Description
If one reflects upon the range of chemical problems accessible to the current quantum theoretical methods for calculations on the electronic structure of molecules, one is immediately struck by the rather narrow limits imposed by economic and numerical feasibility. Most of the systems with which experimental photochemists actually work are beyond the grasp of ab initio methods due to the presence of a few reasonably large aromatic ring systems. Potential energy surfaces for all but the smallest molecules are extremely expensive to produce, even over a restricted group of the possible degrees of freedom, and molecules containing the higher elements of the periodic table remain virtually untouched due to the large numbers of electrons involved. Almost the entire class of molecules of real biological interest is simply out of the question. In general, the theoretician is reduced to model systems of variable appositeness in most of these fields. The fundamental problem, from a basic computational point of view, is that large molecules require large numbers of basis functions, whether Slater type orbitals or Gaussian functions suitably contracted, to provide even a modestly accurate description of the molecular electronic environment. This leads to the necessity of dealing with very large matrices and numbers of integrals within the Hartree-Fock approximation and quickly becomes both numerically difficult and uneconomic.

Semiempirical Methods of Electronic Structure Calculation

Semiempirical Methods of Electronic Structure Calculation PDF Author: Gerald Segal
Publisher: Springer
ISBN: 9780306335082
Category : Science
Languages : en
Pages : 308

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Book Description
If one reflects upon the range of chemical problems accessible to the current quantum theoretical methods for calculations on the electronic structure of molecules, one is immediately struck by the rather narrow limits imposed by economic and numerical feasibility. Most of the systems with which experimental photochemists actually work are beyond the grasp of ab initio methods due to the presence of a few reasonably large aromatic ring systems. Potential energy surfaces for all but the smallest molecules are extremely expensive to produce, even over a restricted group of the possible degrees of freedom, and molecules containing the higher elements of the periodic table remain virtually untouched due to the large numbers of electrons involved. Almost the entire class of molecules of real biological interest is simply out of the question. In general, the theoretician is reduced to model systems of variable appositeness in most of these fields. The fundamental problem, from a basic computational point of view, is that large molecules require large numbers of basis functions, whether Slater type orbitals or Gaussian functions suitably contracted, to provide even a modestly accurate description of the molecular electronic environment. This leads to the necessity of dealing with very large matrices and numbers of integrals within the Hartree-Fock approximation and quickly becomes both numerically difficult and uneconomic.

Semiempirical methods of electronic structure calculation : techniques /edited by G.A. Segal

Semiempirical methods of electronic structure calculation : techniques /edited by G.A. Segal PDF Author: Gerald A. Segal
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Semiempirical Methods of Electronic Structure Calculations

Semiempirical Methods of Electronic Structure Calculations PDF Author: Gerald A. Segal
Publisher:
ISBN:
Category :
Languages : en
Pages : 308

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Book Description


Electronic States of Molecules and Atom Clusters

Electronic States of Molecules and Atom Clusters PDF Author: G. Del Re
Publisher: Springer Science & Business Media
ISBN: 3642931340
Category : Science
Languages : en
Pages : 188

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Book Description