Michael F. Shlesinger

Perspectives in Biological Dynamics and Theoretical Medicine. Anals of the New York Academy of Sciences. Volume 504, (1998)

Koslow, Stephen H., Mandell, Arnold J., Shlesinger, Michael F.

This volume is the result of a conference on Perspectives in Biological Dynamics and Theoretical Medicine. Partial contents: Frequency Modulation dynamics in Neural Networks; Dimensionality of the...

A New Vogel-Like Law: Ionic Conductivity, Dielectric Relaxation and Viscosity Near the Glass Transition (1998)

Bendler, John T., Fontanella, John J., Shlesinger, Michael F.

A model, based on defect diffusion, is developed that describes temperature and pressure dependence of dielectric relaxation, ionic conductivity and viscosity of glass-forming liquids near the glass...

Science and Technology Text Mining: Nonlinear Dynamics (1998)

Kostoff, Ronald N., Shlesinger, Michael F., Tshiteya, Rene

Database Tomography (DT) is a textual database analysis system consisting of two major components: 1) algorithms for extracting multi-word phrase frequencies and phrase proximities (physical...

Duplicate Publication and 'Paper Inflation' in the Fractals Literature (1998)

Kostoff, Ronald N., Johnson, Dustin, Del Rio, J. A., Bloomfield, Louis A., Shlesinger, Michael F., Malpohl, Guido

The similarity of documents in a large database of published Fractals articles was examined for redundancy. Three different text matching techniques were used on published Abstracts to identify...

Mode matches and their locations in the hydrophobic free energy sequences of peptide ligands and their receptor eigenfunctions

Mandell, Arnold J., Selz, Karen A., Shlesinger, Michael F.

Patterns in sequences of amino acid hydrophobic free energies predict secondary structures in proteins. In protein folding, matches in hydrophobic free energy statistical wavelengths appear to...

Random walks with self-similar clusters

Hughes, Barry D., Shlesinger, Michael F., Montroll, Elliott W.

We construct a random walk on a lattice having a hierarchy of self-similar clusters built into the distribution function of allowed jumps. The random walk is a discrete analog of a Lévy flight and...

On the relationship among three theories of relaxation in disordered systems

Klafter, Joseph, Shlesinger, Michael F.

Empirical evidence has accumulated showing the wide occurrence of a stretched-exponential relaxation decay law for many diverse condensed-matter systems. Several theories based on different physical...

On the Williams—Watts function of dielectric relaxation

Shlesinger, Michael F., Montroll, Elliott W.

It has been observed over the past 15 years that experimental frequency-dependent dielectric constants of broad classes of materials including polymeric systems and glasses may be interpreted in...

On 1/f noise and other distributions with long tails

Montroll, Elliott W., Shlesinger, Michael F.

It is shown, following Shockley [Shockley, W. (1957) Proc. IRE 45, 279-290], that, when a population is engaged in tasks whose completion requires the successful conclusion of many independent...

Random walks and generalized master equations with internal degrees of freedom

Landman, Uzi, Montroll, Elliott W., Shlesinger, Michael F.

We present an extension of the continuous-time random walk formalism to include internal states and to establish the connection to generalized master equations with internal states. The theory allows...

Designing Human m1 Muscarinic Receptor-Targeted Hydrophobic Eigenmode Matched Peptides as Functional Modulators

Selz, Karen A., Mandell, Arnold J., Shlesinger, Michael F., Arcuragi, Vani, Owens, Michael J.

A new proprietary de novo peptide design technique generated ten 15-residue peptides targeting and containing the leading nontransmembrane hydrophobic autocorrelation wavelengths, “modes”, of the...

Mode matches and their locations in the hydrophobic free energy sequences of peptide ligands and their receptor eigenfunctions

Mandell, Arnold J., Selz, Karen A., Shlesinger, Michael F.

Patterns in sequences of amino acid hydrophobic free energies predict secondary structures in proteins. In protein folding, matches in hydrophobic free energy statistical wavelengths appear to...

Random walks with self-similar clusters

Hughes, Barry D., Shlesinger, Michael F., Montroll, Elliott W.

We construct a random walk on a lattice having a hierarchy of self-similar clusters built into the distribution function of allowed jumps. The random walk is a discrete analog of a Lévy flight and...

On the relationship among three theories of relaxation in disordered systems

Klafter, Joseph, Shlesinger, Michael F.

Empirical evidence has accumulated showing the wide occurrence of a stretched-exponential relaxation decay law for many diverse condensed-matter systems. Several theories based on different physical...

On the Williams—Watts function of dielectric relaxation

Shlesinger, Michael F., Montroll, Elliott W.

It has been observed over the past 15 years that experimental frequency-dependent dielectric constants of broad classes of materials including polymeric systems and glasses may be interpreted in...

On 1/f noise and other distributions with long tails

Montroll, Elliott W., Shlesinger, Michael F.

It is shown, following Shockley [Shockley, W. (1957) Proc. IRE 45, 279-290], that, when a population is engaged in tasks whose completion requires the successful conclusion of many independent...

Random walks and generalized master equations with internal degrees of freedom

Landman, Uzi, Montroll, Elliott W., Shlesinger, Michael F.

We present an extension of the continuous-time random walk formalism to include internal states and to establish the connection to generalized master equations with internal states. The theory allows...

Designing Human m1 Muscarinic Receptor-Targeted Hydrophobic Eigenmode Matched Peptides as Functional Modulators

Selz, Karen A., Mandell, Arnold J., Shlesinger, Michael F., Arcuragi, Vani, Owens, Michael J.

A new proprietary de novo peptide design technique generated ten 15-residue peptides targeting and containing the leading nontransmembrane hydrophobic autocorrelation wavelengths, “modes”, of the...