stands for Digital Object Identifier
and is the unique identifier for objects on the internet. It can be used to create persistent link and to cite articles.
Using DOI as a persistent link
To create a persistent link, add「http://dx.doi.org/」
before a DOI.
For instance, if the DOI of an article is 10.5297/ser.1201.002 , you can link persistently to the article by entering the following link in your browser: http://dx.doi.org/ 10.5297/ser.1201.002 。
The DOI link will always direct you to the most updated article page no matter how the publisher changes the document's position, avoiding errors when engaging in important research.
Cite a document with DOI
When citing references, you should also cite the DOI if the article has one. If your citation guideline does not include DOIs, you may cite the DOI link.
DOIs allow accurate citations, improve academic contents connections, and allow users to gain better experience across different platforms. Currently, there are more than 70 million DOIs registered for academic contents. If you want to understand more about DOI, please visit airiti DOI Registration （ doi.airiti.com ） 。
劉建惟 , Ph.D Advisor：高騏
- Adams, T. M., Ghiaasiaan, S. M., and Abdel-Khalik, S. I., 1999, “Enhancement of liquid forced convection heat transfer in microchannels due to the release of dissolved noncondensables,” International Journal of Heat and Mass Transfer, Vol. 42, pp. 3563-3573.
- Alofs, D. J., Flagan, R. C., and Springer, G. S., 1971, “Density distribution measurements in rarefiled gases contained between parallel plates at high temperature differences,” The Physics of Fluids, Vol. 14, No. 3, pp. 529-533.
- Arkilic, E. B., and Schmidt, M. A., 1997, “Gaseous slip flow in long microchannels,” Journal of Microelectromechanical Systems, Vol. 6, No. 2, pp. 167-178.
- Arulanandam, S., and Li, D., 2000, “Liquid transport in rectangular microchannels by electroosmotic pumping,” Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 161, pp. 89-102.
- Beskok, A., and Karniadakis, G. E., 1994, “Simulation of heat and momentum transfer in complex microgeometries,” Journal of Thermophysics and Heat Transfer, Vol. 8, No. 4, pp. 246-259.
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