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Ong, H.; Roundy, P.E. (2019). “Linear effects of nontraditional Coriolis terms on intertropical convergence zone forced large‐scale flow”. Q. J. R. Meteorol. Soc.145 (723): 2445–2453. arXiv:2005.12946. Bibcode: 2019QJRMS.145.2445O. doi:10.1002/qj.3572.
Trefethen, Lloyd M.; Bilger, R. W.; Fink, P. T.; Luxton, R. E.; Tanner, R. I. (September 1965). “The Bath-Tub Vortex in the Southern Hemisphere”. Nature207 (5001): 1084–1085. Bibcode: 1965Natur.207.1084T. doi:10.1038/2071084a0.
Fox, J; Daniel, T (2008). “A neural basis for gyroscopic force measurement in the halteres of Holorusia”. Journal of Comparative Physiology194 (10): 887–897. doi:10.1007/s00359-008-0361-z. PMID18751714.
Hayashi, M.; Itoh, H. (2012). “The Importance of the Nontraditional Coriolis Terms in Large-Scale Motions in the Tropics Forced by Prescribed Cumulus Heating”. J. Atmos. Sci.69 (9): 2699–2716. Bibcode: 2012JAtS...69.2699H. doi:10.1175/JAS-D-11-0334.1.
Ong, H.; Roundy, P.E. (2019). “Linear effects of nontraditional Coriolis terms on intertropical convergence zone forced large‐scale flow”. Q. J. R. Meteorol. Soc.145 (723): 2445–2453. arXiv:2005.12946. Bibcode: 2019QJRMS.145.2445O. doi:10.1002/qj.3572.
Trefethen, Lloyd M.; Bilger, R. W.; Fink, P. T.; Luxton, R. E.; Tanner, R. I. (September 1965). “The Bath-Tub Vortex in the Southern Hemisphere”. Nature207 (5001): 1084–1085. Bibcode: 1965Natur.207.1084T. doi:10.1038/2071084a0.
Fox, J; Daniel, T (2008). “A neural basis for gyroscopic force measurement in the halteres of Holorusia”. Journal of Comparative Physiology194 (10): 887–897. doi:10.1007/s00359-008-0361-z. PMID18751714.