Cite
Ferroelastic phase transition compositional dependence for solid-solution [(Li0.5Bi0.5)xBi1−x][MoxV1−x]O4 scheelite-structured microwave dielectric ceramics
MLA
Jing Guo, et al. “Ferroelastic Phase Transition Compositional Dependence for Solid-Solution [(Li0.5Bi0.5)XBi1−x][MoxV1−x]O4 Scheelite-Structured Microwave Dielectric Ceramics.” Acta Materialia, vol. 59, Feb. 2011, pp. 1502–09. EBSCOhost, widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsair&AN=edsair.doi...........bd0622bd6267f5ff21c1855aecf244e6&authtype=sso&custid=ns315887.
APA
Jing Guo, Clive A. Randall, L. Shui, D. Zhou, H.C. Liu, G.Q. Zhang, W.G. Qu, Xi Yao, Q.P. Wang, X.G. Wu, Hong Wang, & L.X. Pang. (2011). Ferroelastic phase transition compositional dependence for solid-solution [(Li0.5Bi0.5)xBi1−x][MoxV1−x]O4 scheelite-structured microwave dielectric ceramics. Acta Materialia, 59, 1502–1509.
Chicago
Jing Guo, Clive A. Randall, L. Shui, D. Zhou, H.C. Liu, G.Q. Zhang, W.G. Qu, et al. 2011. “Ferroelastic Phase Transition Compositional Dependence for Solid-Solution [(Li0.5Bi0.5)XBi1−x][MoxV1−x]O4 Scheelite-Structured Microwave Dielectric Ceramics.” Acta Materialia 59 (February): 1502–9. http://widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsair&AN=edsair.doi...........bd0622bd6267f5ff21c1855aecf244e6&authtype=sso&custid=ns315887.