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:Yes, Storms is Low Energy Nuclear Reactions editor at Naturwissenschaften, and that is sometimes asserted to imply that there was some conflict of interest, but, in fact, that Naturwissenschaften even needed such an editor -- they were starting to get many submissions and needed a subject matter expert -- represents a major shift. Storms did not review his own paper.
 
:Yes, Storms is Low Energy Nuclear Reactions editor at Naturwissenschaften, and that is sometimes asserted to imply that there was some conflict of interest, but, in fact, that Naturwissenschaften even needed such an editor -- they were starting to get many submissions and needed a subject matter expert -- represents a major shift. Storms did not review his own paper.
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Some journals had published all along, there are over a thousand peer-reviewed papers in the field, and many thousands of conference papers.
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:Some journals had published all along, there are over a thousand peer-reviewed papers in the field, and many thousands of conference papers.
    
:DorMouse, since blocked, was essentially ignorant. Muon-Catalyzed Fusion is a known form of cold fusion (it was originally called that, long before the FPHE was discovered), but I'm unaware of any high-Z nucleide catalysis. The production of very high-Z nucleides, by collision of lower-Z nucleides, is sometimes called "cold fusion," but it's at temperatures that are *almost* those of hot fusion. This has nothing to do with the topic which is well-known as "cold fusion," which is about low-temperature reactions, well below 1000 degrees C, often at room temperature, instead of the millions of degrees necessary for hot fusion. --[[User:Abd|Abd]] 20:36, 31 July 2012 (EDT)
 
:DorMouse, since blocked, was essentially ignorant. Muon-Catalyzed Fusion is a known form of cold fusion (it was originally called that, long before the FPHE was discovered), but I'm unaware of any high-Z nucleide catalysis. The production of very high-Z nucleides, by collision of lower-Z nucleides, is sometimes called "cold fusion," but it's at temperatures that are *almost* those of hot fusion. This has nothing to do with the topic which is well-known as "cold fusion," which is about low-temperature reactions, well below 1000 degrees C, often at room temperature, instead of the millions of degrees necessary for hot fusion. --[[User:Abd|Abd]] 20:36, 31 July 2012 (EDT)
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