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Dive into the research topics where Nader Mobed is active.

Publication


Featured researches published by Nader Mobed.


Physical Review D | 1997

Muon capture by a proton in heavy baryon chiral perturbation theory

Harold W. Fearing; Randy Lewis; Nader Mobed; S. Scherer

The matrix element for muon capture by a proton is calculated to


Classical and Quantum Gravity | 2007

Tidal dynamics in cosmological spacetimes

Bahram Mashhoon; Nader Mobed; Dinesh Singh

{O(p}^{3})


Physical Review Letters | 2006

Can Gravity Distinguish between Dirac and Majorana Neutrinos

Dinesh Singh; Nader Mobed; G. Papini

within heavy baryon chiral perturbation theory using the new


Journal of Physics A | 2004

Helicity precession of spin-1/2 particles in weak inertial and gravitational fields

Dinesh Singh; Nader Mobed; G. Papini

{O(p}^{3})


Classical and Quantum Gravity | 2009

Effects of spacetime curvature on spin-1/2 particle zitterbewegung

Dinesh Singh; Nader Mobed

Lagrangian of Ecker and Moj\ifmmode \check{z}\else \v{z}\fi{}i\ifmmode \check{s}\else \v{s}\fi{}. External nucleon fields are renormalized using the appropriate definition of the wave function renormalization factor


Classical and Quantum Gravity | 2007

The implications of noninertial motion on covariant quantum spin

Dinesh Singh; Nader Mobed

{Z}_{N}.


Physical Review D | 2009

Breakdown of Lorentz Invariance for Spin-1/2 Particle Motion in Curved Space-Time with Applications to Muon Decay

Dinesh Singh; Nader Mobed

Our expression for


Physical Review Letters | 2007

Reply to comment on `Can gravity distinguish between Dirac and Majorana neutrinos?'

Dinesh Singh; G. Papini; Nader Mobed

{Z}_{N}


Physical Review D | 1999

Isospin violation and the proton's neutral weak magnetic form factor

Randy Lewis; Nader Mobed

differs somewhat from that found in the existing literature, but is the one which is consistent with the Lagrangian we use and the one which ensures, within our approach, the nonrenormalization of the vector coupling as required by the conserved vector current. Expressions for the standard muon capture form factors are derived and compared to experimental data and we determine three of the coefficients of the Ecker-Moj\ifmmode \check{z}\else \v{z}\fi{}i\ifmmode \check{s}\else \v{s}\fi{} Lagrangian, namely,


Modern Physics Letters A | 2012

A New Perspective on Path Integral Quantum Mechanics in Curved Space-Time

Dinesh Singh; Nader Mobed

{b}_{7}, {b}_{19},

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D. Singh

University of Regina

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W. R. Wood

Trinity Western University

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