Amanote Research

Amanote Research

    RegisterSign In

Error Reduction Technique Using Covariant Approximation and Application to Nucleon Form Factor

doi 10.22323/1.164.0262
Full Text
Open PDF
Abstract

Available in full text

Date

December 20, 2012

Authors
Eigo Shintani
Publisher

Sissa Medialab


Related search

Nucleon Axial Form Factor From Generalized Parton Distributions

Physical Review D
AstronomyPhysics
2019English

Neural Network Study of the Nucleon Axial Form-Factor

2019English

Nucleon Form Factors Using Dynamical Twisted Mass Fermions

2010English

Efficient Reduction From Block Hessenberg Form to Hessenberg Form Using Shared Memory

Lecture Notes in Computer Science
Computer ScienceTheoretical Computer Science
2012English

Empirical Fit to the Nucleon Electromagnetic Form Factors

Physical Review C
1995English

Stripification of Free-Form Surfaces With Global Error Bounds for Developable Approximation

IEEE Transactions on Automation Science and Engineering
ControlSystems EngineeringElectricalElectronic Engineering
2009English

Nucleon Transition Form Factors and New Perspectives

Journal of Physics: Conference Series
AstronomyPhysics
2007English

Nucleon Vector and Axial-Vector Form Factors

2017English

Predictions of Covariant Chiral Perturbation Theory for Nucleon Polarisabilities and Polarised Compton Scattering

European Physical Journal C
EngineeringAstronomyPhysics
2015English

Amanote Research

Note-taking for researchers

Follow Amanote

© 2025 Amaplex Software S.P.R.L. All rights reserved.

Privacy PolicyRefund Policy