Oracle

046faccfsigned

Electrons carry a negative electric charge. Answer true or false.

Answer

true
sources
www.nist.gov, cern open data portal, electron glossary: https://opendata.cern.ch/glossary/electron, codata (nist) definition of the elementary charge and electron charge: the electron has charge -e, where e = 1.602176634e-19 c is the elementary charge; standard physics/chemistry textbooks (e.g. nist reference on constants, units and uncertainty) state the electron carries one unit of negative electric charge., codata (physics.nist.gov) fundamental physical constants: elementary charge e = -1.602176634e-19 c for the electron; standard physics/chemistry textbooks (e.g. iupac) confirm the electron is negatively charged., codata / nist fundamental physical constants (elementary charge e, electron charge = -e); standard physics textbooks (e.g. halliday & resnick, fundamentals of physics) state the electron carries negative electric charge, codata / nist fundamental physical constants: electron charge = -1.602176634e-19 c (https://physics.nist.gov/cgi-bin/cuu/value?e), codata / nist fundamental physical constants: electron charge is -1.602176634e-19 c (negative by definition), codata / nist fundamental physical constants: elementary charge e is defined as the magnitude of electron charge, and the electron's charge is -e (negative), per standard particle physics (e.g. particle data group)., codata 2018 elementary charge e = 1.602176634e-19 c, with the electron charge equal to -e (nist, physics.nist.gov/cuu/constants); also any standard physics textbook (e.g., halliday & resnick) stating the electron has negative charge., codata 2018 recommended value of the elementary charge and electron properties (physics.nist.gov/cgi-bin/cuu/value?e); electron charge = -1.602176634e-19 c, codata 2018 recommended values (nist), elementary charge entry: electron charge = -1.602176634e-19 c, codata 2018 recommended values of fundamental physical constants (electron charge = -1.602176634e-19 c); nist reference on constants, units, and uncertainty, codata 2018 recommended values of fundamental physical constants (elementary charge e = 1.602176634e-19 c, electron charge = -e); nist physical measurement laboratory, physics.nist.gov/cuu/constants, codata 2018 recommended values of fundamental physical constants (nist), which lists the electron elementary charge as -1.602176634e-19 c, codata 2018 recommended values of fundamental physical constants (nist); electron charge e- = -1.602176634e-19 c, codata 2018 recommended values of the fundamental physical constants (electron charge = -1.602176634e-19 c), codata 2018 recommended values of the fundamental physical constants (electron charge = -1.602176634e-19 c, by definition of the elementary charge under the 2019 si redefinition), codata 2018 recommended values of the fundamental physical constants (nist), which lists the elementary charge e = 1.602176634e-19 c and specifies the electron charge as -e, codata 2018 recommended values of the fundamental physical constants: electron charge = -1.602176634e-19 c (negative), codata 2018/2022 recommended values (physics.nist.gov/cuu/constants) and standard physics references (e.g., halliday/resnick/walker, fundamentals of physics) both state the electron's charge as −e, i.e. negative, by the standard si sign convention., codata 2018/2022 recommended values (physics.nist.gov/cuu/constants), elementary charge e = 1.602176634e-19 c, with the electron assigned charge -e by the standard si sign convention; also stated in nist and iupac physical chemistry references., codata 2018/2022 recommended values of fundamental physical constants (physics.nist.gov/cuu/constants), which lists the electron's charge as -1.602176634e-19 c; consistent with standard physics references (e.g., nist, encyclopaedia britannica 'electron'), codata 2018/2022 recommended values of fundamental physical constants (physics.nist.gov/cuu/constants), which lists the elementary charge as attributed to the proton (+e) and the electron as carrying charge -e, codata 2018/2022 recommended values of the fundamental physical constants (nist), which lists the electron's charge as -1.602176634e-19 c, codata 2018/nist recommended values of fundamental physical constants: electron charge = -1.602176634e-19 c, codata 2018/nist reference on fundamental physical constants (physics.nist.gov): electron elementary charge is listed as -1.602176634e-19 c, i.e. negative; consistent with the standard model particle physics definition of the electron as a negatively charged lepton., codata 2018/nist reference value for elementary charge; electron charge is defined as negative one elementary charge (nist codata, physics.nist.gov/cgi-bin/cuu/value?e), en.wikipedia.org, goldbook.iupac.org, home.cern, iupac gold book, electron charge: https://goldbook.iupac.org/terms/view/e01982, nist codata (physics.nist.gov/cuu/constants), 'elementary charge' and electron charge value of -1.602176634e-19 c, nist codata 2018 recommended value of the elementary charge (physics.nist.gov/cuu/constants): electron charge -1.602176634e-19 c, i.e. negative., nist codata 2018 recommended values of fundamental physical constants (physics.nist.gov/cuu/constants): elementary charge e = 1.602176634e-19 c, with the electron assigned charge -e by convention, nist codata 2018 recommended values of fundamental physical constants: electron has elementary charge -e (negative); consistent with standard physics textbooks (e.g. halliday/resnick), nist codata 2018/2022 recommended values of fundamental physical constants: electron charge = -1.602176634e-19 c (https://physics.nist.gov/cgi-bin/cuu/value?eqchrge), nist codata fundamental physical constants (electron elementary charge = -1.602176634e-19 c, negative sign), nist codata fundamental physical constants (elementary charge / electron charge, physics.nist.gov) and standard physics textbooks (e.g. halliday/resnick), both stating the electron carries negative elementary charge, nist codata fundamental physical constants (elementary charge e = 1.602176634e-19 c, electron charge -e); nist reference on constants, units and uncertainty, https://physics.nist.gov/cuu/constants/, nist, ampere: introduction (https://www.nist.gov/si-redefinition/ampere-introduction); nist, why does matter exist? roundness of electrons may hold clues (https://www.nist.gov/news-events/news/2023/07/why-does-matter-exist-roundness-electrons-may-hold-clues), nist, ampere: introduction — https://www.nist.gov/si-redefinition/ampere-introduction, opendata.cern.ch, openstax, physics, 18.1 electrical charges, conservation of charge, and transfer of charge: https://openstax.org/books/physics/pages/18-1-electrical-charges-conservation-of-charge-and-transfer-of-charge, openstax.org, physics.nist.gov, u.s. department of energy, doe explains...electrons (https://www.energy.gov/science/doe-explainselectrons); iupac gold book, electron charge (https://goldbook.iupac.org/terms/view/e01982), u.s. department of energy, doe explains...electrons, https://www.energy.gov/science/doe-explainselectrons. the paragraph beginning "electrons are normally bound" states that electrons have a negative charge., www.energy.gov, www.metoffice.gov.uk, www.nasa.gov, www.nrc.gov, www.rug.nl

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    #1314trueCODATA (NIST) definition of the elementary charge and electron charge: the electron has charge -e, where e = 1.602176634e-19 C is the elementary charge; standard physics/chemistry textbooks (e.g. NIST Reference on Constants, Units and Uncertainty) state the electron carries one unit of negative electric charge.
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