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==Other uses== Although less commonly used, activation energy also applies to [[nuclear reaction]]s<ref>{{Cite web |url=https://www.asc.ohio-state.edu/kagan.1/phy367/Lectures/P367_lec_14.html |publisher=Ohio State University |access-date=15 October 2021 |last1=Kagan |first1=Harris |last2=Barrett |first2=Tom |title=Energy in a Modern Society: XIV. Nuclear energy |type=Course |archive-date=22 March 2019 |archive-url=https://web.archive.org/web/20190322001453/https://www.asc.ohio-state.edu/kagan.1/phy367/Lectures/P367_lec_14.html |url-status=live }}</ref> and various other physical phenomena.<ref>{{cite journal |doi=10.1111/j.1151-2916.1990.tb05175.x |title=Estimate of the Activation Energies for Boundary Diffusion from Rate-Controlled Sintering of Pure Alumina, and Alumina Doped with Zirconia or Titania |journal=Journal of the American Ceramic Society |volume=73 |issue=5 |pages=1172 |year=1990 |last1=Wang |first1=Jenqdaw |last2=Raj |first2=Rishi }}</ref><ref>{{cite journal |doi=10.1080/00150193.2012.707592 |title=Temperature Dependence of the Raman Frequency, Damping Constant and the Activation Energy of a Soft-Optic Mode in Ferroelectric Barium Titanate |journal=Ferroelectrics |volume=432 |pages=14β21 |year=2012 |last1=Kiraci |first1=A |last2=Yurtseven |first2=H |issue=1 |bibcode=2012Fer...432...14K |s2cid=121142463 }}</ref><ref>{{cite journal |doi=10.1016/j.combustflame.2017.02.019 |title=Effect of catalytically active Ce 0.8 Gd 0.2 O 1.9 coating on the heterogeneous combustion of methane within MgO stabilized ZrO 2 porous ceramics |journal=Combustion and Flame |volume=180 |pages=32β39 |year=2017 |last1=Terracciano |first1=Anthony C |last2=De Oliveira |first2=Samuel |last3=Vazquez-Molina |first3=Demetrius |last4=Uribe-Romo |first4=Fernando J |last5=Vasu |first5=Subith S |last6=Orlovskaya |first6=Nina }}</ref>
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