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Phase Formation and Protoniz Conduction of La(Ba)$ScO_3$ Perovskites
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J. Korean Ceram. Soc.. 2001;38(11):993

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Effect of Mg Doping on the Superconducting Properties of Cu<tex>$_1-x$</tex>Tl<tex>$_x$</tex>Ba<tex>$_2$</tex>Ca<tex>$_3-y$</tex>Mg<tex>$_y$</tex>Cu<tex>$_4$</tex>O<tex>$_12 - delta$</tex>
IEEE Transactions on Applied Superconductivity. 2006;16(1):2-8   Crossref logo
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Effects of <formula formulatype="inline"> <tex Notation="TeX">${\hbox {Na}}^ + $</tex></formula>, <formula formulatype="inline"><tex Notation="TeX">${\hbox {Mg}}^{2+} $</tex> </formula>, <formula formulatype="inline"><tex Notation="TeX">${\hbox {Ca}}^{2+} $</tex></formula>, <formula formulatype="inline"><tex Notation="TeX">${\hbox {Sr}}^{2 +} $</tex></formula> and <formula formulatype="inline"><tex Notation="TeX">${\hbox {Ba}}^{2 +} $</tex> </formula> Doping on the Scintillation Properties of <formula formulatype="inline"><tex Notation="TeX">${\hbox {CeBr}}_3$</tex> </formula>
IEEE Transactions on Nuclear Science. 2015;62(5):2343-2348   Crossref logo
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Ferrimagnetic Sr<formula formulatype="inline"><tex Notation="TeX">$_{1.5}$</tex></formula>Ba<formula formulatype="inline"><tex Notation="TeX"> $_{0.5}$</tex></formula>Zn<formula formulatype="inline"><tex Notation="TeX">$_2$</tex></formula>Fe<formula formulatype="inline"><tex Notation="TeX"> $_{12}$</tex> </formula>O<formula formulatype="inline"><tex Notation="TeX">$_{22}$</tex> </formula> (Zn-Y) Single Crystal With Planar Anisotropy
IEEE Magnetics Letters. 2011;2:5000104-5000104   Crossref logo
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Electronic Phase Separation in Multiferroic <formula formulatype="inline"><tex Notation="TeX">${\rm Ba}_{3}{\rm NbFe}_{3}{\rm Si}_{2}{\rm O}_{14}$</tex></formula>
IEEE Transactions on Magnetics. 2012;48(11):3529-3531   Crossref logo
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Nonlinear Magnetic Properties of Mn-Modified Ba&lt;tex&gt;$_3$&lt;/tex&gt;Co&lt;tex&gt;$_2$&lt;/tex&gt;Fe&lt;tex&gt;$_23$&lt;/tex&gt;O&lt;tex&gt;$_41$&lt;/tex&gt;Hexaferrite
IEEE Transactions on Magnetics. 2004;40(4):1947-1951   Crossref logo
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Irrecoverable and Recoverable Resistivity Resulting From the First Order Magnetic-Structural Phase Transition in Gd<formula formulatype="inline"> <tex Notation="TeX">$_5$</tex></formula>(Si<formula formulatype="inline"> <tex Notation="TeX">$_x$</tex></formula>Ge<formula formulatype="inline"><tex Notation="TeX">$_{1-x}$</tex></formula>)<formula formulatype="inline"><tex Notation="TeX">$_4$</tex></formula>
IEEE Magnetics Letters. 2010;1:6000104-6000104   Crossref logo
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C-Axis Oriented Ba-Ferrite Thin Film With Perpendicular Anisotropy Deposited on Si&lt;tex&gt;$_3$&lt;/tex&gt;N&lt;tex&gt;$_4$&lt;/tex&gt;Substrate
IEEE Transactions on Magnetics. 2004;40(4):2955-2957   Crossref logo
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<inline-formula> <tex-math notation="TeX">\(\mathsf{B}^{p}\) </tex-math></inline-formula>-<inline-formula> <tex-math notation="TeX">\(\mathsf{Tree}\) </tex-math></inline-formula>: A Predictive <inline-formula> <tex-math notation="TeX">\(\mathsf{B}^{+}\) </tex-math></inline-formula>-<inline-formula> <tex-math notation="TeX">\(\mathsf{Tree}\) </tex-math></inline-formula> for Reducing Writes on Phase Change Memory
IEEE Transactions on Knowledge and Data Engineering. 2014;26(10):2368-2381   Crossref logo
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An Embedded 65 nm CMOS Remote Temperature Sensor With Digital Beta Correction and Series Resistance Cancellation Achieving an Inaccuracy of 0.4<formula formulatype="inline"><tex Notation="TeX">$^{\circ}$</tex></formula>C (3<formula formulatype="inline"><tex Notation="TeX">$\sigma$</tex> </formula>) From <formula formulatype="inline"><tex Notation="TeX">$-$</tex> </formula>40<formula formulatype="inline"><tex Notation="TeX">$^{\circ}$</tex> </formula>C to 130<formula formulatype="inline"><tex Notation="TeX">$^{\circ}$</tex> </formula>C
IEEE Journal of Solid-State Circuits. 2015;50(9):2127-2137   Crossref logo
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Martensitic Transformation in Ni<formula formulatype="inline"> <tex Notation="TeX">$_{50}$</tex> </formula>Mn<formula formulatype="inline"> <tex Notation="TeX">$_{50-{\rm x}}$</tex> </formula>Sn<formula formulatype="inline"> <tex Notation="TeX">$_{\rm x}$</tex> </formula><formula formulatype="inline"> <tex Notation="TeX">$({\rm x} = 11, 12.5)$</tex> </formula> and Ni<formula formulatype="inline"> <tex Notation="TeX">$_{49}$</tex> </formula>Mn<formula formulatype="inline"> <tex Notation="TeX">$_{51 - {\rm x}}$</tex> </formula>Sn<formula formulatype="inline"> <tex Notation="TeX">$_{\rm x}$</tex> </formula> <formula formulatype="inline"> <tex Notation="TeX">$({\rm x} =13)$</tex> </formula> Heusler Alloys
IEEE Transactions on Magnetics. 2012;48(11):3749-3752   Crossref logo
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