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ラトルバック

出典: フリー百科事典『ウィキペディア(Wikipedia)』
ラトルバックの運動。

: rattlebackrattle

[1][2][3]

: Celt, [ˈkɛlt]: celt, [ˈsɛlt]rattlebackceltwobblestone[4][5]Space Pet[6]

歴史

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19

1890[7][8]19091918[9][10]195019701980

材質と形状

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木彫りのラトルバック。おもりとして取り付けられた亀の重心は中心軸からずらされている。亀の頭が向いているのが回転しやすい方向である。

10 cm2 cm1 cm[11][2]

沿

物理

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ラトルバックのロール軸およびピッチ軸

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[13]



2008ZhuravlevKlimov[14]

2015KudraAwrejcewicz[15]

調[16]

関連項目

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脚注

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(一)^ Introduction to Hugh's Talk. Millennium Mathematics Project.  University of Cambridge. 20122520131019

(二)^ ab32011167 

(三)^ "celt, n.2". OED Online. September 2012. Oxford University Press. 1 October 2012 <http://www.oed.com/view/Entry/29533?isAdvanced=false&result=2&rskey=EPfrjA&>

(四)^ H. Takano (2014). Spin reversal of a rattleback with viscous friction. Regular and Chaotic Dynamics 19 (1): 81-99. http://link.springer.com/article/10.1134/S1560354714010067 2016520. 

(五)^ A. Garcia, M. Hubbard (1988). Spin Reversal of the Rattleback: Theory and Experiment. Proc. R. Soc. A 418 (1854): 165-197. https://ui.adsabs.harvard.edu/abs/1988RSPSA.418..165G/abstract 2016522. 

(六)^ Popular Science (11): 121. (1991). 

(七)^ G. T. Walker (1892-1895). On a curious dynamical property of celts. Proceedings of the Cambridge Philosophical Society (Cambridge, England) 8: 305-306. http://www.biodiversitylibrary.org/item/95857#page/323/mode/1up 2016520. 

(八)^ G. T. Walker (1896). On a dynamical top. The quarterly journal of pure and applied mathematics (Somerville, Mass) 28: 175-184. http://digreg.mathguide.de/cgi-bin/ssgfi/anzeige.pl?db=reg&ci=QJPAM&id=ART&sd=y1896v28p?&nr=122037&ew=SSGFI 2016520. 

(九)^ H. Crabtree (1909). An elementary treatment of the spinning tops and gyroscopic motion. London: Longmans, Green & Co.. pp. 7, 54, plate I.. https://archive.org/details/elementarytreatm00crab 2016520 

(十)^ A. Gray (1918). Treatise of gyrostatics and rotational motion. London: Macmillan Publishers Ltd.. pp. 364-365. https://archive.org/details/cu31924005727965 2016520 

(11)^ Physical Science Fax!: Celt Spoon. Flinn Sientific, Inc.. 200612142016522

(12)^ Keith Moffatt (2008). Rattleback Reversals: A Prototype of Chiral Dynamics. 2016522

(13)^ A. Garcia, M. Hubbard (1988). Spin Reversal of the Rattleback: Theory and Experiment. Proc. R. Soc. A 418 (1854): 165-197. https://ui.adsabs.harvard.edu/abs/1988RSPSA.418..165G/abstract 2016522. 

(14)^ V. Ph. Zhuravlev, D. M. Klimov (2008). Mechanics of Solids. Global motion of the celt 43 (3): 320-327. 

(15)^ G. Kudra, J. Awrejcewicz (2015). Application and experimental validation of new computational models of friction forces and rolling resistance. Acta Mechanica 226 (9): 2831-2848. http://link.springer.com/article/10.1007/s00707-015-1353-z 2016522. 

(16)^ J. Awrejcewicz, G. Kudra (2014). Mathematical modelling and simulation of the bifurcational wobblestone dynamics. Discontinuity, Nonlinearity and Complexity 3 (2): 123-132. 

参考文献

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  • Blackowiak, A. Donald. The dynamics of the celt with second order averaging and computer algebra. Cornell University. Ithaca, N.Y. 1996.
  • Blackowiak, A. Donald, H. Kaplan and Richard H. Rand. "The dynamics of the celt with second order averaging and computer algebra." Proceedings of the ASME Design Engineering Technical Conferences. Sacramento. 1997.
  • Boardman, Allan J. "The mysterious celt." Fine Woodworking, 53:68-9. The Taunton Press Inc. Newtown, Conn. July/August 1985.
  • Bondi, Hermann. "The rigid body dynamics of unidirectional spin." Proceedings of the Royal Society of London for the Improvement of Natural Knowledge, A405:265-74. London. 1986.
  • Caughey, T.K. "A mathematical model of the rattleback." International Journal of Non-Linear Mechanics, 15:293-302. Orlando, Fla. 1980.
  • Crane, H. Richard. "How things work: The rattleback revisited." The Physics Teacher, 29(5):278-9. American Association of Physics Teachers. College Park, Md. 1991.
  • Dammermann, W. "Celtic wackelsteine." Physics In Our Time, 12:178-80. 1981.
  • Edge, Ronald D. and Richard Lee Childers. "String and sticky tape experiments: Curious celts and riotous rattlebacks." The Physics Teacher, 37(2):80. American Association of Physics Teachers. College Park, Md. 1999.
  • Franti,L. On the rotational dynamics of the Rattleback,Central European Journal of Physics, Volume 11 (2013), Issue 2, pp 162–172,arXiv:1202.6506
  • Garcia, A. and M. Hubbard. "Spin reversal of the rattleback: Theory and experiment." Proceedings of the Royal Society of London for the Improvement of Natural Knowledge, A418:165-97. London. 1988.
  • Holzhey, C. and H. Puschmann. "The Celtic wackelstein: A remarkable gyroscope." Recent Science, 1(2):6-15. 1986.
  • Kane, Thomas R. and David A. Levinson. "Realistic mathematical modeling of the rattleback." International Journal of Non-Linear Mechanics, 17:175-86. 1982.
  • Lindberg, R.E. Jr. and R.W. Longman. "On the dynamic behavior of the wobblestone." Acta Mechanica, 49:81-94. 1983.
  • Magnus, Karl. "The stability of rotations of a non-symmetrical body on a horizontal surface." Festschrift Szabo, 19-23, Berlin. 1971.
  • Magnus, Kurt. "Zur theorie der Keltischen wackelsteine." Zeitschrift für Angewandte Mathematik und Mechanik, 54:54-5. 1974.
  • Markeev, A.P. "On the dynamics of a solid on an absolutely rough plane." PMM U.S.S.R, 47:473-8. 1983.
  • McGeer, Tad and Leigh Hunt Palmer "Wobbling, toppling and forces of contact." American Journal of Physics, 57:1089-98. American Association of Physics Teachers. College Park, Md. 1989.
  • Moffatt, Henry Keith. "Talk for the 50th anniversary." Journal of Fluid Mechanics, Cambridge University Press. Cambridge, England. 2006.
  • Pascal, M. "Asymptotic solution of the equations of motion for a Celtic stone." PMM U.S.S.R, 47:269-76. 1984.
  • Pascal, M. "The use of the method of averaging to study non-linear oscillations of the Celtic stone." PMM U.S.S.R, 50:520-2. 1986.
  • Rand, Richard H. Topics in nonlinear dynamics with computer algebra. Gordon and Breach. Langhorne, Penn. 1994.
  • Rand, Richard H. and Dieter Armbruster. "Perturbation methods, bifurcation theory and computer algebra." Springer-Verlag. New York. 1987.
  • Satterly, John. "Induced rocking." American Journal of Physics, 26:625-7. American Association of Physics Teachers. College Park, Md. 1958.
  • Satterly, John. "Rocking experiment with two degrees of freedom." American Journal of Physics, 21:267-73. American Association of Physics Teachers. College Park, Md. 1953.
  • Satterly, John. "Three interesting instances of rocking." American Journal of Physics, 23:14-26. American Association of Physics Teachers. College Park, Md. 1955.
  • Satterly, John. "Vibrational dynamics with lenses, mirrors and prisms." American Journal of Physics, 23:562-81. American Association of Physics Teachers. College Park, Md. 1955.
  • Sherburne, Charles W. "ARK: Scientific demonstration toy." U.S. Design 210,947. Filed: Nov. 12, 1995. Patented: May 7, 1968. San Pedro, Calif.
  • Walgate, Robert. "Tops that like to spin one way." Nature, 323:204. Nature Publishing Group, London. 1986.
  • Walker, Jearl. "The Amateur Scientist: The mysterious 'rattleback': A stone that spins in one direction and then reverses." Scientific American, 241:172-84. Scientific American Inc. New York. 1979.
  • Walker, Jearl. "The Amateur Scientist: Rattlebacks and tippe tops; Roundabout: The physics of rotation in the everyday world." Scientific American, 33-8, 66. Scientific American Inc. New York. 1985.
  • Walker, Jearl. "Puzzling gyroscopes." Spektrum der Wissenschaft, part 1, December, 109-13, 1979; part 2, May, 151-7, 1981.
  • Wheeler, Nicholas A. Rattlebacks—How do they work? Reed College Department of Physics. Portland, Ore.
  • Zhuravlev, V.Ph. and D.M. Klimov. "Global motion of the celt." Mechanics of Solids, 43(3):320-7. 2008.

外部リンク

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