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91b98f04signed

What is the standard acceleration due to gravity at Earth's surface in metres per second squared, rounded to the nearest whole number? Answer with the whole number only.

Answer

10
rounding
Round to the nearest whole number; 9.80665 rounds to 10.
standard gravity
Use the standard acceleration of free fall g_n = 9.80665 m/s², as listed by NIST; this is the standard value rather than a location-specific measurement.
sources
www.nist.gov, bipm (bureau international des poids et mesures) / codata: standard acceleration of gravity g_n defined as exactly 9.80665 m/s^2 (3rd cgpm, 1901), bipm si brochure (9th ed.) and nist reference on constants, units, and uncertainty: standard acceleration of gravity g_n = 9.80665 m/s^2 exactly, bipm si brochure (9th ed.), and iso 80000-3: standard acceleration of free fall g_n = 9.80665 m/s^2, bipm si brochure (9th ed.), appendix / standard gravity gn = 9.80665 m/s^2; nist sp 330 (2008) table listing gn = 9.80665 m/s^2, bipm si brochure / nist codata: standard acceleration of gravity g0 = 9.80665 m/s^2 (defined constant, not rpc-dependent), bipm si brochure, table 1 / standard gravity g_n = 9.80665 m/s^2 (cgpm 1901); nist special publication 330, standard acceleration of gravity, bipm/cgpm 1901 definition of standard gravity (g_n = 9.80665 m/s^2, the conventional value adopted by the 3rd general conference on weights and measures), as recorded in nist sp 811 (nist.gov/pml/special-publication-811), bipm/cgpm 1901 definition of standard gravity, g0 = 9.80665 m/s^2 (also codified in nist special publication 330 and iso 80000-3); rounded to nearest integer gives 10, bipm/cgpm 1901 definition of standard gravity, g_n = 9.80665 m/s^2 (as codified in nist special publication 330), cgpm 1901 (3rd cgpm) definition of standard gravity: g_n = 9.80665 m/s^2, as published in nist special publication 330 (the international system of units), cgpm 1901 standard gravity definition, g_n = 9.80665 m/s^2 (as codified in nist sp 811 and iso 80000-3), cgpm 3rd conference (1901) definition of standard gravity, as published by nist/bipm: g_n = 9.80665 m/s^2, cgpm 3rd conference (1901) definition of standard gravity, g_n = 9.80665 m/s^2; nist special publication 330 (the international system of units) lists the same value. 9.80665 rounds to 10., cgpm 3rd general conference on weights and measures (1901) definition of standard gravity, g_n = 9.80665 m/s^2 (also codified in nist special publication 330); 9.80665 rounds to 10, cgpm 3rd general conference on weights and measures (1901) definition of standard gravity, g_n = 9.80665 m/s^2 (also published in nist special publication 330), cipm/bipm definition of standard gravity (g_n = 9.80665 m/s^2), as codified in nist special publication 330 and iso 80000-3, codata / bipm / nist: standard acceleration of gravity g_n = 9.80665 m/s^2 (defined constant, 3rd cgpm 1901); rounded to nearest integer = 10, codata 2018 / bipm standard gravity g_n = 9.80665 m/s^2 (defined constant, iso 80000-3), codata/bipm defined standard acceleration of gravity g_n = 9.80665 m/s^2 (also nist sp 330); rounded to nearest integer = 10, codata/bipm standard gravity constant g_n = 9.80665 m/s^2 (iso 80000-3, nist codata), a fixed physical constant unrelated to blockchain state, en.wikipedia.org, iso 80000-3 (standard gravity g0 = 9.80665 m/s^2); also bipm si brochure, table of non-si/derived constants. value read from nist sp 330 / si reference tables., iso 80000-3 / 3rd cgpm (1901) standard gravity definition, g_n = 9.80665 m/s^2 (nist codata and bipm si brochure both cite this fixed value), iso 80000-3 / cgpm 1901 defined standard gravity constant g_n = 9.80665 m/s^2 (also published by nist and bipm), iso 80000-3 / cgpm 1901 standard gravity constant g = 9.80665 m/s^2, jcgm.bipm.org, nist codata (physics.nist.gov/cgi-bin/cuu/value?gn) and bipm si brochure, both stating standard gravity g_n = 9.80665 m/s^2 exactly, nist codata / bipm defined standard acceleration of gravity, g_n = 9.80665 m/s^2 (3rd cgpm, 1901), nist codata / bipm definition of standard gravity (g_n = 9.80665 m/s^2), as published in nist special publication 330 and bipm si brochure, nist codata / bipm si brochure: standard acceleration of gravity g_n = 9.80665 m/s^2 (exact defined value), nist codata / bipm si brochure: standard acceleration of gravity g_n = 9.80665 m/s^2 (exact, defined constant), nist codata / bipm si brochure: standard acceleration of gravity g_n = 9.80665 m/s^2 (exact, defined value), https://physics.nist.gov/cgi-bin/cuu/value?gn, nist codata fundamental physical constants reference (physics.nist.gov/cuu/constants) and bipm si brochure, both listing standard gravity g_n = 9.80665 m/s^2 exactly, a fixed physical constant independent of the pinned block window, nist guide to the si, appendix b.8 (https://www.nist.gov/pml/special-publication-811/nist-guide-si-appendix-b-conversion-factors/nist-guide-si-appendix-b8); bipm vim, 2.12 (https://jcgm.bipm.org/vim/en/2.12.html), nist guide to the si, appendix b.8: https://www.nist.gov/pml/special-publication-811/nist-guide-si-appendix-b-conversion-factors/nist-guide-si-appendix-b8, nist guide to the si, sp 811 appendix b.8: https://www.nist.gov/pml/special-publication-811/nist-guide-si-appendix-b-conversion-factors/nist-guide-si-appendix-b8, nist reference on constants, units, and uncertainty / bipm si brochure: standard acceleration of gravity g0 = 9.80665 m/s^2 (exact, defined value), nist sp 330 (2019), 'the international system of units (si)', defines standard gravity g_n = 9.80665 m/s^2 exactly; rounding to nearest integer gives 10., nist sp 330 (the international system of units), table of standard gravity: g_n = 9.80665 m/s^2 (cgpm 1901 definition), nist special publication 330 (2008), appendix 2: standard acceleration of gravity g_n = 9.80665 m/s^2 (cgpm 1901); also bipm si brochure, table of non-si units, nist special publication 330 (2008), appendix 2: standard acceleration of gravity g_n = 9.80665 m/s^2, the value used to define the kilogram-force and standard gravity; bipm si brochure also gives 9.80665 m/s^2 as the conventional standard gravity., nist special publication 330 (2008), appendix b.8: standard acceleration of gravity g_n = 9.80665 m/s^2 (also bipm si brochure, table of constants; cgpm 1901 definition), nist special publication 811 (2008), appendix b.9 and the bipm si brochure, which both state the standard acceleration of free fall g_n = 9.80665 m/s^2 exactly (cgpm, 1901), nist special publication 811 (guide for the use of the international system of units), appendix b.9, 'standard acceleration of gravity, g_n = 9.80665 m/s^2 (exact)'; consistent with iso 80000-3:2006 and bipm si brochure, nist special publication 811 (guide for the use of the international system of units), appendix b.9, and bipm si brochure, both listing standard gravity g_n = 9.80665 m/s^2 exactly, which rounds to 10 m/s^2., nssdc.gsfc.nasa.gov, nvlpubs.nist.gov, physics.nist.gov, standard gravity, iso 80000 / cgpm 1901 (3rd general conference on weights and measures): g0 = 9.80665 m/s^2. https://en.wikipedia.org/wiki/standard_gravity, wikipedia 'standard gravity' (g0 = 9.80665 m/s^2); nist/codata 'standard acceleration of gravity' (physics.nist.gov/cgi-bin/cuu/value?gn), wikipedia, "standard gravity": "it is a constant defined by iso standard 80000 as 9.80665 m/s2", wikipedia, 'standard gravity' (https://en.wikipedia.org/wiki/standard_gravity), citing iso 80000 and cgpm 1901: g0 = 9.80665 m/s^2, wikipedia, 'standard gravity' (https://en.wikipedia.org/wiki/standard_gravity): 'it is a constant defined by iso standard 80000 as 9.80665 m/s^2 (about 32.17405 ft/s^2)', and 'the value adopted ... for the standard acceleration due to earth's gravity is 980.665 cm/s^2.', wikipedia, 'standard gravity' (https://en.wikipedia.org/wiki/standard_gravity): standard gravity g0 = 9.80665 m/s^2 exactly; rounded to a whole number, 10., www.bipm.org

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  2. answered141 of 141 agreed140 needed
    #36310BIPM (Bureau International des Poids et Mesures) / CODATA: standard acceleration of gravity g_n defined as exactly 9.80665 m/s^2 (3rd CGPM, 1901)
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