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Bonded terms

Parallel molecular dynamics codes are distinguished by their methods of dividing the force evaluation workload among the processors (or nodes). The force evaluation is naturally divided into bonded terms, approximating the effects of covalent bonds and involving up to four nearby atoms, and pairwise nonbonded terms, which account for the electrostatic, dispersive, and electronic repulsion interactions between atoms that are not covalently bonded. The nonbonded forces involve interactions between all pairs of particles in the system and hence require time proportional to the square of the number of atoms. Even when neglected outside of a cutoff, nonbonded force evaluations represent the vast majority of work involved in a molecular dynamics simulation. [Pg.474]

Rognan published the scoring function FRESNO (fast free energy scoring function), which considers a hydrogen-bond term, a lipophilic terra, a repulsive term for the buried polar surface, a rotational term, and a desolvation terra [82]. [Pg.611]

Ihi.. same molecule but separated by at least three bonds (i.e. have a 1, h relationship where n > 4). In a simple force field the non-bonded term is usually modelled using a Coulomb piilential term for electrostatic interactions and a Lennard-Jones potential for van der IV.uls interactions. [Pg.185]

In a Urey-Bradley force field, angle bending is achieved using 1,3 non-bonded interaction rather than an explicit angle-bending potential. The stretch-bond term in such a forci field would be modelled by a harmonic function of the distance between the 1,3 atoms ... [Pg.197]

Independent molecules and atoms interact through non-bonded forces, which also play an important role in determining the structure of individual molecular species. The non-bonded interactions do not depend upon a specific bonding relationship between atoms, they are through-space interactions and are usually modelled as a function of some inverse power of the distance. The non-bonded terms in a force field are usually considered in two groups, one comprising electrostatic interactions and the other van der Waals interactions. [Pg.199]

Some force fields replace the Lennard-Jones 6-12 term between hydrogen-bonding atoms by ail explicit hydrogen-bonding term, which is often described using a 10-12 Lennard-Jones potential ... [Pg.233]

The parameters A and B are those from the force held being used. A few studies have incorporated a hydrogen-bonding term also. [Pg.199]

The OPLS atom types are a superset of the AMBER united atom types and the bonding parameters are just those of AMBER, supplemented where needed by the OPLS developers. The bond stretch, angle bending, dihedral angle and improper dihedral angle terms are identical to those of AMBER. Unlike AMBER, different combination rules are used for the van der Waals parameters, no hydrogen bonding term is used and no lone pairs are used. [Pg.192]

The BIOh- force field option in HyperChem has no hydrogen bonding term. This is consistent with evolution and common use of the CHARMM force field (even the 1983 paper did not use a hydrogen bonding term in its example calculations and mentioned that the functional form used then was unsatisfactory and under review). [Pg.196]

In valence bond terms the mesomers indicated by (1—7) reflect the ground-state position of thiophene. Mesomer (1) is the principal contributor to the ring stmcture (2) and (3) are significant (4—7) contribute in a minor way to the stmcture. [Pg.17]

Prop = cavity term + dipolar term + hydrogen-bonding terms... [Pg.254]

In valence bond terms the pyrazine ring may be represented as a resonance hybrid of a number of canonical structures (e.g. 1-4), with charge separated structures such as (3) contributing significantly, as evidenced by the polar character of the C=N bond in a number of reactions. The fusion of one or two benzene rings in quinoxaline (5) and phenazine (6) clearly increases the number of resonance structures which are available to these systems. [Pg.158]

The location of the quantum/classical boundary across a covalent bond also has implications for the energy terms evaluated in the Emm term. Classical energy terms that involve only quantum atoms are not evaluated. These are accounted for by the quantum Hamiltonian. Classical energy terms that include at least one classical atom are evaluated. Referring to Figure 2, the Ca—Cp bond term the N — Ca—Cp, C — Ca—Cp, Ha— Ca—Cp, Ca—Cp — Hpi, and Ca—Cp — Hp2 angle tenns and the proper dihedral terms involving a classical atom are all included. [Pg.227]

For more than two conjugated double bonds terms such as triene , etc, are used (Ref 8) Olefins can be prepd by numerous methods which are described in textbooks on organic chemistry such as Ref 7... [Pg.422]


See other pages where Bonded terms is mentioned: [Pg.351]    [Pg.351]    [Pg.352]    [Pg.361]    [Pg.368]    [Pg.191]    [Pg.193]    [Pg.184]    [Pg.185]    [Pg.233]    [Pg.234]    [Pg.249]    [Pg.250]    [Pg.338]    [Pg.609]    [Pg.149]    [Pg.200]    [Pg.180]    [Pg.191]    [Pg.193]    [Pg.12]    [Pg.96]    [Pg.96]    [Pg.181]    [Pg.323]    [Pg.55]    [Pg.26]    [Pg.27]    [Pg.42]    [Pg.223]    [Pg.207]    [Pg.117]    [Pg.87]    [Pg.105]    [Pg.137]   
See also in sourсe #XX -- [ Pg.88 ]




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A Selection of Common Terms in Bonding Technology

Adhesive bonding terms Links

Benzene, bond energy terms

Benzene, bond energy terms resonance

Bond Stretch and Angle Bending Cross Term

Bond energy term values

Bond enthalpy term, determination

Bond enthalpy terms

Bond enthalpy terms and electronegativities

Bond lengths terms Links

Bond order dependent valence terms

Bond stretch terms

Bond stretching term

Bond terms

Bond terms

Bonding cross-terms

Carbon bond enthalpy terms

Computation bond energy terms

Covalent bonds enthalpy terms

Ethylene, bond energy terms

Formaldehyde, bond energy terms

Government bonds long-term

Hydrogen bonding explicit term model

Hydrogen bonding term

Inflation-indexed bonds term structure

Intermediate-term bonds

Localized bond terms

Long-term bonds

Long-term maturity bonds

Nitrogen bond enthalpy terms

Oxygen bond enthalpy terms

Phosphorus bond enthalpy terms

Ring strain in terms of bond energies

Selected bond enthalpy terms

Selenium bond enthalpy terms

Short-term bonds

Silicon bond enthalpy terms

Strain through-bond term

Sulfur bond enthalpy terms

Tellurium bond enthalpy terms

The Hydrogen Bond Term

Through-bond term

Water, bond energy terms

Water, bond energy terms dissociation

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