scispace - formally typeset
P

Pavel A. Andreev

Researcher at Moscow State University

Publications -  167
Citations -  2480

Pavel A. Andreev is an academic researcher from Moscow State University. The author has contributed to research in topics: Quantum hydrodynamics & Spin-½. The author has an hindex of 25, co-authored 162 publications receiving 2204 citations. Previous affiliations of Pavel A. Andreev include University of Haifa & Peoples' Friendship University of Russia.

Papers
More filters
Proceedings Article

Validating Formative Partial Least Squares (PLS) Models: Methodological Review and Empirical Illustration

TL;DR: This paper aims to present a methodological review of formativ e model identification and evaluation, and brings a brief theoretical overview of formative constructs, and puts together a guideline for estimating formative measurement and structural mod els.
Journal ArticleDOI

Separated spin-up and spin-down quantum hydrodynamics of degenerated electrons: Spin-electron acoustic wave appearance.

TL;DR: A QHD model, which separately describes spin-up electrons and spin-down electrons, and reveals a soundlike solution called the spin-electron acoustic wave, which is applied to degenerate electron gas of paramagnetic and ferromagnetic metals in the external magnetic field.
Journal ArticleDOI

Realising M-Payments: modelling consumers' willingness to M-pay using Smart Phones

TL;DR: The paper concludes that irrespective of individuals' high levels of personal innovativeness or mobile self-efficacy and irrespective of whether Smart Mobile Media Services are perceived as useful and easy to use, consumers will not make M-Payments, until they are convinced that Smart Phone M- payment systems are safe and reliable.
Journal ArticleDOI

Problem with the single-particle description and the spectra of intrinsic modes of degenerate boson-fermion systems

TL;DR: In this paper, the authors show that the balance equations of the number of particles and momentum immediately follow from the multiparticle Schrodinger equation, and that the equation for the wave function in the medium coincides in form with the GP equation, where we can restrict ourselves only by the first-order terms of the interaction radius of the stress tensor of the bosons, for dilute gases.
Journal ArticleDOI

Quantum hydrodynamics approach to the formation of waves in polarized two-dimensional systems of charged and neutral particles

TL;DR: In this article, a method of quantum hydrodynamics (QHD) for the study of the quantum evolution of a system of polarized particles was presented. But this method is only applicable to two-dimensional (2D) physical systems.