Họ Tôm gõ mõ (Vietnamese Wikipedia)

Analysis of information sources in references of the Wikipedia article "Họ Tôm gõ mõ" in Vietnamese language version.

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archive.org

  • A. Anker, S. T. Ahyong, P. Y. Noel, and A. R. Palmer (2006). “Morphological phylogeny of alpheid shrimps: parallel preadaptation and the origin of a key morphological innovation, the snapping claw”. Evolution. 60 (12): 2507–2528. doi:10.1554/05-486.1. PMID 17263113.Quản lý CS1: nhiều tên: danh sách tác giả (liên kết)

dailymail.co.uk

doi.org

  • A. Anker, S. T. Ahyong, P. Y. Noel, and A. R. Palmer (2006). “Morphological phylogeny of alpheid shrimps: parallel preadaptation and the origin of a key morphological innovation, the snapping claw”. Evolution. 60 (12): 2507–2528. doi:10.1554/05-486.1. PMID 17263113.Quản lý CS1: nhiều tên: danh sách tác giả (liên kết)
  • J. E. Duffy (1996). “Eusociality in a coral-reef shrimp”. Nature. 381 (6582): 512–514. doi:10.1038/381512a0.
  • M. R. McClure (1996). “Symmetry of large claws in snapping shrimp in nature (Crustacea: Decapoda: Alpheidae)”. Crustaceana. 69 (7): 920–921. doi:10.1163/156854096X00321.
  • M. Versluis, B. Schmitz, A von der Heydt & D. Lohse (2000). “How Snapping Shrimp Snap: Through Cavitating Bubbles”. Science. 289 (5487): 2114–2117. doi:10.1126/science.289.5487.2114. PMID 11000111.Quản lý CS1: nhiều tên: danh sách tác giả (liên kết)
  • W. W. L. Au & K. Banks (1998). “The acoustics of the snapping shrimp Synalpheus parneomeris in Kaneohe Bay”. Journal of the Acoustical Society of America. 103: 41–47. doi:10.1121/1.423234.
  • B. G. Ferguson & J. L. Cleary (2001). “In situ source level and source position estimates of biological transient signals produced by snapping shrimp in an underwater environment”. Journal of the Acoustical Society of America. 109 (6): 3031–3037. doi:10.1121/1.1339823. PMID 11425145.
  • D. Lohse, B. Schmitz & M. Versluis (2001). “Snapping shrimp make flashing bubbles”. Nature. 413 (6855): 477–478. doi:10.1038/35097152. PMID 11586346.
  • S. N. Patek and R. L. Caldwell (2005). “Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp”. The Journal of Experimental Biology. 208 (Pt 19): 3655–3664. doi:10.1242/jeb.01831. PMID 16169943.

nature.com

nih.gov

pubmed.ncbi.nlm.nih.gov

  • A. Anker, S. T. Ahyong, P. Y. Noel, and A. R. Palmer (2006). “Morphological phylogeny of alpheid shrimps: parallel preadaptation and the origin of a key morphological innovation, the snapping claw”. Evolution. 60 (12): 2507–2528. doi:10.1554/05-486.1. PMID 17263113.Quản lý CS1: nhiều tên: danh sách tác giả (liên kết)
  • M. Versluis, B. Schmitz, A von der Heydt & D. Lohse (2000). “How Snapping Shrimp Snap: Through Cavitating Bubbles”. Science. 289 (5487): 2114–2117. doi:10.1126/science.289.5487.2114. PMID 11000111.Quản lý CS1: nhiều tên: danh sách tác giả (liên kết)
  • B. G. Ferguson & J. L. Cleary (2001). “In situ source level and source position estimates of biological transient signals produced by snapping shrimp in an underwater environment”. Journal of the Acoustical Society of America. 109 (6): 3031–3037. doi:10.1121/1.1339823. PMID 11425145.
  • D. Lohse, B. Schmitz & M. Versluis (2001). “Snapping shrimp make flashing bubbles”. Nature. 413 (6855): 477–478. doi:10.1038/35097152. PMID 11586346.
  • S. N. Patek and R. L. Caldwell (2005). “Extreme impact and cavitation forces of a biological hammer: strike forces of the peacock mantis shrimp”. The Journal of Experimental Biology. 208 (Pt 19): 3655–3664. doi:10.1242/jeb.01831. PMID 16169943.

nus.edu.sg

rmbr.nus.edu.sg

nytimes.com

nytimes.com

select.nytimes.com

si.edu

si-pddr.si.edu

web.archive.org