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*< and sup
*< sup > 278 </ sup > Mt in the decay chain of < sup > 294 </ sup > Uus ;
*< sup > 276 </ sup > Mt in the decay chain of < sup > 288 </ sup > Uup ;
*< sup > 275 </ sup > Mt in the decay chain of < sup > 287 </ sup > Uup ;
*< sup > 274 </ sup > Mt in the decay chain of < sup > 282 </ sup > Uut ;
*< sup > 270 </ sup > Mt in the decay chain of < sup > 278 </ sup > Uut ;
*< sup > 268 </ sup > Mt in the decay chain of < sup > 272 </ sup > Rg.
*< sup > 237 </ sup > U is also produced via an ( n, 2n ) reaction with < sup > 238 </ sup > U. This only happens with very energetic neutrons.

*< and >
*< cite > Science and Sanity: An Introduction to Non-Aristotelian Systems and General Semantics </ cite >, Alfred Korzybski, Preface by Robert P. Pula, Institute of General Semantics, 1994, hardcover, 5th edition, ISBN 0-937298-01-8, ( full text online )
*< span class =" plainlinks "> Charles Lyell </ span > Notable Names Database.
*< tt > File Checksum Integrity Verifier ( FCIV )</ tt >, a command-prompt utility from Microsoft that computes and verifies MD5 or SHA-1 cryptographic hash values of files.
*< cite id = junkbox ></ cite >
*< cite id = Electronic Design ></ cite >
*< cite id = refClem1948 > G M Clemence, " On the System of Astronomical Constants ", Astronomical Journal, vol. 53 ( 6 ) ( 1948 ), issue # 1170, pp 169 – 179 .</ cite >
*< cite id = refClem1971 > G M Clemence ( 1971 ), " The Concept of Ephemeris Time ", Journal for the History of Astronomy, vol. 2 ( 1971 ), pp. 73 – 79 .</ cite >
*< cite id = refGuin1988 > B Guinot and P K Seidelmann ( 1988 ), " Time scales – Their history, definition and interpretation ", Astronomy and Astrophysics, vol.
*< cite id = refESAE >' ESAE 1961 ': " Explanatory Supplement to the Astronomical Ephemeris and the American Ephemeris and Nautical Almanac " (' prepared jointly by the Nautical Almanac Offices of the United Kingdom and the United States of America ', HMSO, London, 1961 ).</ cite >
*< cite id = refIAU1976 > IAU resolutions ( 1976 ): Resolutions adopted by the IAU in 1976 at Grenoble .</ cite >
*< cite id = refILE >" Improved Lunar Ephemeris ", US Government Printing Office, 1954 .</ cite >
*< cite id = refMark1955 > W Markowitz, R G Hall, S Edelson ( 1955 ), " Ephemeris time from photographic positions of the moon ", Astronomical Journal, vol.
*< cite id = refMark1958 > W Markowitz, R G Hall, L Essen, J V L Parry ( 1958 ), " Frequency of cesium in terms of ephemeris time ", Physical Review Letters, vol. 1 ( 1958 ), 105 – 107 .</ cite >
*< cite id = refMark1959 > W Markowitz ( 1959 ), " Variations in the Rotation of the Earth, Results Obtained with the Dual-Rate Moon Camera and Photograhic Zenith Tubes ", Astronomical Journal, vol. 64 ( 1959 ), pp. 106 – 113 .</ cite >
*< cite id = refMark1988 > Wm Markowitz ( 1988 ), " Comparisons of ET ( Solar ), ET ( Lunar ), UT and TDT ", in A K Babcock & G A Wilkins ( eds.
*< cite id = tr32-1306 > W G Melbourne, J D Mulholland, W L Sjogren, F M Sturms ( 1968 ), " Constants and Related Information for Astrodynamic Calculations ", NASA Technical Report 32-1306, Jet Propulsion Laboratory, July 15, 1968 .</ cite >
*< cite id = morrste2004 > L V Morrison, F R Stephenson ( 2004 ), " Historical values of the Earth's clock error ΔT and the calculation of eclipses ", Journal for the History of Astronomy ( ISSN 0021-8286 ), vol.
*< cite id = refNewcSun > Simon Newcomb ( 1895 ), Tables of the Sun (" Tables of the Motion of the Earth on its Axis and Around the Sun ", in " Tables of the Four Inner Planets ", vol.
*< cite id = refSitter1927 > W de Sitter ( 1927 ), " On the secular accelerations and the fluctuations of the longitudes of the moon, the sun, Mercury and Venus ", Bull.

*< and 4
*< cite id = cro2000 > Crowell, Benjamin, ( 2011 ), Light and Matter, ( 2011, Light and Matter ), especially at Section 4. 2, Newton's First Law, Section 4. 3, Newton's Second Law, and Section 5. 1, Newton's Third Law .</ cite >
*< sup > 1 </ sup >/< sub > 4 </ sub > turn.
*< sup > π </ sup >/< sub > 2 </ sub > or < sup > τ </ sup >/< sub > 4 </ sub > radians
*< sup > 18 </ sup > F, fluorine-18 can be made by the reaction of neon with deuterons, < sup > 20 </ sup > Ne reacts in a ( d ,< sup > 4 </ sup > He ) reaction.
*< cite id = PBS2004 > PBS Innovation Series – " Brain Fingerprinting ", May 4, 2004.
*< big > 4.
*< nowiki >#</ nowiki > 4 – The Hamilton-Holly House was built in 1831 by Thomas E. Davis and sold to Colonel Alexander Hamilton, the son of Alexander Hamilton, first Secretary of the Treasury, in 1833.
*< nowiki >#</ nowiki > 24-This was the original location of the Limbo clothing boutique, which opened for business in 1965 and moved to # 4 in 1967.
*< sup > 4 </ sup >
*< cite >" The fruits of this victory were 23 pieces of artillery ( nearly all rifled ), 4, 000 prisoners, 300 loaded wagons, more than 300 horses, and quite a large amount of commissary and quartermaster's stores.
< tr align = right >< td align = left > FIS < td > 4, 520, 668 < td > 57. 4 %< td > 31 *< td > 1, 031
*< 4 > The 33. of march
*< sup > 2 </ sup > A < sub > 2 </ sub >( 4 ) Solvable
*< sup > 2 </ sup > F < sub > 4 </ sub >( 2 ) Not perfect, but the derived group has index 2 and is the simple Tits group.
*< sup > 2 </ sup > A < sub > 3 </ sub >( 4 ) The Schur multiplier has an extra Z / 2Z, so the Schur multiplier of the simple group has order 2 instead of 1.
*< sup > 2 </ sup > A < sub > 3 </ sub >( 9 ) The Schur multiplier has an extra Z / 3Z × Z / 3Z, so the Schur multiplier of the simple group has order 36 instead of 4.
*< sup > 2 </ sup > A < sub > 5 </ sub >( 4 ) The Schur multiplier has an extra Z / 2Z × Z / 2Z, so the Schur multiplier of the simple group has order 12 instead of 3.
*< sup > 2 </ sup > E < sub > 6 </ sub >( 4 ) The Schur multiplier has an extra Z / 2Z × Z / 2Z, so the Schur multiplier of the simple group has order 12 instead of 3.
*< sup > 2 </ sup > B < sub > 2 </ sub >( 8 ) The Schur multiplier has an extra Z / 2Z × Z / 2Z, so the Schur multiplier of the simple group has order 4 instead of 1.

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