{"id":691,"date":"2012-03-01T14:45:18","date_gmt":"2012-03-01T19:45:18","guid":{"rendered":"http:\/\/lenr-canr.org\/wordpress\/?page_id=691"},"modified":"2024-05-02T16:08:54","modified_gmt":"2024-05-02T20:08:54","slug":"iccf-9-selected-papers","status":"publish","type":"page","link":"https:\/\/lenr-canr.org\/wordpress\/?page_id=691","title":{"rendered":"ICCF-9 Proceedings"},"content":{"rendered":"<p>The Ninth International Conference on Cold Fusion was held May 19 &#8211; 24, 2002 at Tsinghua University, Beijing, China. Several papers from it are in our library.<\/p>\r\n<p style=\"text-align: center;\"><span style=\"font-size: x-large;\"><a href=\"#Proceedings\">Click here to jump down to the PROCEEDINGS<\/a><\/span><\/p>\r\n<hr width=\"80%\" \/>\r\n<table border=\"0\">\r\n<tbody>\r\n<tr>\r\n<td>\r\n<div id=\"attachment_705\" style=\"width: 260px\" class=\"wp-caption aligncenter\"><img loading=\"lazy\" decoding=\"async\" aria-describedby=\"caption-attachment-705\" class=\"size-full wp-image-705  \" title=\"ICCF9book\" src=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/ICCF10book.jpg\" alt=\"\" width=\"250\" height=\"345\" srcset=\"https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/ICCF10book.jpg 250w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/ICCF10book-108x150.jpg 108w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/ICCF10book-217x300.jpg 217w\" sizes=\"auto, (max-width: 250px) 100vw, 250px\" \/><p id=\"caption-attachment-705\" class=\"wp-caption-text\">The ICCF-9 Proceedings<\/p><\/div>\r\n<\/td>\r\n<td>\r\n<div id=\"attachment_699\" style=\"width: 410px\" class=\"wp-caption aligncenter\"><img loading=\"lazy\" decoding=\"async\" aria-describedby=\"caption-attachment-699\" class=\"size-full wp-image-699  \" title=\"iccf9a\" src=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9a.jpg\" alt=\"\" width=\"400\" height=\"456\" srcset=\"https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9a.jpg 400w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9a-131x150.jpg 131w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9a-263x300.jpg 263w\" sizes=\"auto, (max-width: 400px) 100vw, 400px\" \/><p id=\"caption-attachment-699\" class=\"wp-caption-text\">Conference Chairman Xing Zhong Li. Photo courtesy D. Nagel.<\/p><\/div>\r\n<\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\n<div id=\"attachment_700\" style=\"width: 510px\" class=\"wp-caption aligncenter\"><img loading=\"lazy\" decoding=\"async\" aria-describedby=\"caption-attachment-700\" class=\"size-full wp-image-700 \" title=\"iccf9b\" src=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9b.jpg\" alt=\"\" width=\"500\" height=\"520\" srcset=\"https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9b.jpg 500w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9b-144x150.jpg 144w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9b-288x300.jpg 288w\" sizes=\"auto, (max-width: 500px) 100vw, 500px\" \/><p id=\"caption-attachment-700\" class=\"wp-caption-text\">Talbott Chubb and Jean Paul Biberian, photo courtesy D. Nagel.<\/p><\/div>\r\n<table border=\"1\">\r\n<tbody>\r\n<tr>\r\n<td><a href=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"aligncenter size-medium wp-image-704\" title=\"iccf9f\" src=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f-300x243.jpg\" alt=\"\" width=\"300\" height=\"243\" srcset=\"https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f-300x243.jpg 300w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f-150x121.jpg 150w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f.jpg 500w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\" \/><\/a><\/td>\r\n<td><a href=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"aligncenter size-medium wp-image-704\" title=\"iccf9f\" src=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f-300x243.jpg\" alt=\"\" width=\"300\" height=\"243\" srcset=\"https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f-300x243.jpg 300w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f-150x121.jpg 150w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9f.jpg 500w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\" \/><\/a><\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\n<p>Two views of a multilayer thin-film deposition experiment shown during\u00a0a visit to Great Wall Ti-Gold, Inc. The infrared thermal imaging camera is\u00a0used to detect excess heat. Photos courtesy D. Nagel.<\/p>\r\n<div id=\"attachment_701\" style=\"width: 510px\" class=\"wp-caption aligncenter\"><img loading=\"lazy\" decoding=\"async\" aria-describedby=\"caption-attachment-701\" class=\"size-full wp-image-701 \" title=\"iccf9c\" src=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9c.jpg\" alt=\"\" width=\"500\" height=\"554\" srcset=\"https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9c.jpg 500w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9c-135x150.jpg 135w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9c-270x300.jpg 270w\" sizes=\"auto, (max-width: 500px) 100vw, 500px\" \/><p id=\"caption-attachment-701\" class=\"wp-caption-text\">Zhongqun Tian, Martin Fleischmann and Michael Melich, photo courtesy D. Nagel.<\/p><\/div>\r\n<div id=\"attachment_702\" style=\"width: 570px\" class=\"wp-caption aligncenter\"><a href=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9d.jpg\"><img loading=\"lazy\" decoding=\"async\" aria-describedby=\"caption-attachment-702\" class=\" wp-image-702  \" title=\"iccf9d\" src=\"http:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9d.jpg\" alt=\"\" width=\"560\" height=\"519\" srcset=\"https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9d.jpg 700w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9d-150x139.jpg 150w, https:\/\/lenr-canr.org\/wordpress\/wp-content\/uploads\/iccf9d-300x278.jpg 300w\" sizes=\"auto, (max-width: 560px) 100vw, 560px\" \/><\/a><p id=\"caption-attachment-702\" class=\"wp-caption-text\">Researchers visit the Great Wall, photo courtesy D. Nagel.<\/p><\/div>\r\n<h2 align=\"center\"><a name=\"Proceedings\"><\/a>PROCEEDINGS<\/h2>\r\n\n<div class=\"wpdt-c wdt-skin-light\">\n    \n<input type=\"hidden\" id=\"wdtNonceFrontendEdit_44\" name=\"wdtNonceFrontendEdit_44\" value=\"49e171e51f\" \/><input type=\"hidden\" name=\"_wp_http_referer\" value=\"\/wordpress\/index.php?rest_route=%2Fwp%2Fv2%2Fpages%2F691\" \/>    <input type=\"hidden\" id=\"table_1_desc\" 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id=\"table_44_row_0\">\n                            <td style=\"\">1,807<\/td>\n                            <td style=\"\">Zhang, Z.-Q.<\/td>\n                            <td style=\"\">Zhang, Z.-Q., Zhang, Z.-L., Zhang, W-S.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Are there some loose bound states of nucleus-nucleus two-body system?<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><a href='http:\/\/lenr-canr.org\/acrobat\/ZhangZQarethereso.pdf'  target='_blank'><button class=''>OPEN<\/button><\/a><\/td>\n                            <td style=\"\">2006-04-06<\/td>\n                            <td style=\"\">We obtain the possible solutions of the stable Schr?dinger equation with Coulomb barrier and square well potential induced by nuclear force for a two nuclei system. The wave functions, energy eigenvalues and the existence condition of the possible loose bound states of this system are given. The binding energy is few keV for ground states of some light nuclei here.<\/td>\n                            <td style=\"\">theory, schrodinger, bound states<\/td>\n                            <td style=\"\">Zhang, Z.-Q., Zhang, Z.-L., Zhang, W-S. 2002 Are there some loose bound states of nucleus-nucleus two-body system? The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science We obtain the possible solutions of the stable Schr?dinger equation with Coulomb barrier and square well potential induced by nuclear force for a two nuclei system. The wave functions, energy eigenvalues and the existence condition of the possible loose bound states of this system are given. The binding energy is few keV for ground states of some light nuclei here. theory, schrodinger, bound states <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_1\">\n                            <td style=\"\">1,808<\/td>\n                            <td style=\"\">Zhang, Z.-L.<\/td>\n                            <td style=\"\">Zhang, Z.-L., Zhang, W-S., Zhang, Z.-Q.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Further study on the solution of Schrodinger equation of hydrogen-like atom<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><a href='http:\/\/lenr-canr.org\/acrobat\/ZhangZLfurtherstu.pdf'  target='_blank'><button class=''>OPEN<\/button><\/a><\/td>\n                            <td style=\"\">2006-04-06<\/td>\n                            <td style=\"\">In this work the Schr?dinger equation of the hydrogen-like atom is analytically solved. Three sets of analytical solution are obtained if the factor <i>r<sup>-l<\/sup><\/i> is not neglected. The first solution is the same as the traditional radial wave function; another one diverges; the last one is far different from the traditional solution. On the consideration of the finite size of the nucleus, the third wave function does not diverge while <i>r<\/i> approaches to zero. Its radial wave function has below characteristics: (1) the angular-momentum quantum number <i>l<\/i> must be greater than the principal quantum number n; (2) <i>l<\/i> must not be 0 or 1; (3) the electron-cloud distribution differs from the traditional one; (4) the electron is closer to the nucleus by comparison with that in traditional results. On the other hand, the validity of solutions needs to be verified experimentally.<\/td>\n                            <td style=\"\">theory, schrodinger<\/td>\n                            <td style=\"\">Zhang, Z.-L., Zhang, W-S., Zhang, Z.-Q. 2002 Further study on the solution of Schrodinger equation of hydrogen-like atom The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science In this work the Schr?dinger equation of the hydrogen-like atom is analytically solved. Three sets of analytical solution are obtained if the factor <i>r<sup>-l<\/sup><\/i> is not neglected. The first solution is the same as the traditional radial wave function; another one diverges; the last one is far different from the traditional solution. On the consideration of the finite size of the nucleus, the third wave function does not diverge while <i>r<\/i> approaches to zero. Its radial wave function has below characteristics: (1) the angular-momentum quantum number <i>l<\/i> must be greater than the principal quantum number n; (2) <i>l<\/i> must not be 0 or 1; (3) the electron-cloud distribution differs from the traditional one; (4) the electron is closer to the nucleus by comparison with that in traditional results. On the other hand, the validity of solutions needs to be verified experimentally. theory, schrodinger <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_2\">\n                            <td style=\"\">1,809<\/td>\n                            <td style=\"\">Zhang, Z.-L.<\/td>\n                            <td style=\"\">Zhang, Z.-L., Zhang, W-S.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Possibility of electron capture by deuteron<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><a href='http:\/\/lenr-canr.org\/acrobat\/ZhangZLpossibilit.pdf'  target='_blank'><button class=''>OPEN<\/button><\/a><\/td>\n                            <td style=\"\">2006-04-06<\/td>\n                            <td style=\"\">In this work, the results about deuteron capturing electron are obtained from some calculation according to the experimental data presented in \"NUCLEAR WALLET CARDS\". The half-life of such electron capture decay is about 1.04 ? 10^11 y, which is almost as same as <i>t<\/i><sub>1\/2<\/sub> =1.28 ? 10^9 year of K^40, the <i>t<\/i><sub>1\/2<\/sub> = 1.3 ? 10^13 year of Te^123 and <i>t<\/i>1\/2 =1.4 ? 10^17 year of V50 shown in that \"CARDS\". The mass defect of this process is 6.694207691 ? 10^-5 u. . . .<\/td>\n                            <td style=\"\">theory, dineutron, deuteron, electron capture, transmutation<\/td>\n                            <td style=\"\">Zhang, Z.-L., Zhang, W-S. 2002 Possibility of electron capture by deuteron The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science In this work, the results about deuteron capturing electron are obtained from some calculation according to the experimental data presented in \"NUCLEAR WALLET CARDS\". The half-life of such electron capture decay is about 1.04 ? 10^11 y, which is almost as same as <i>t<\/i><sub>1\/2<\/sub> =1.28 ? 10^9 year of K^40, the <i>t<\/i><sub>1\/2<\/sub> = 1.3 ? 10^13 year of Te^123 and <i>t<\/i>1\/2 =1.4 ? 10^17 year of V50 shown in that \"CARDS\". The mass defect of this process is 6.694207691 ? 10^-5 u. . . . theory, dineutron, deuteron, electron capture, transmutation <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_3\">\n                            <td style=\"\">1,813<\/td>\n                            <td style=\"\">Zhang, W-S.<\/td>\n                            <td style=\"\">Zhang, W-S., Zhang, Z.-F., Zhang, Z.-L.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Primary calorimetric results on closed Pd\/D2O electrolysis systems by calvet calorimetry<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><a href='http:\/\/lenr-canr.org\/acrobat\/ZhangWSprimarycal.pdf'  target='_blank'><button class=''>OPEN<\/button><\/a><\/td>\n                            <td style=\"\">2003-07-09<\/td>\n                            <td style=\"\">Anomalous heat absorption was observed in a closed Pd|D2O electrolysis system by Calvet calorimetry. The average excess power was ~ 14.6 mW over 105 hours period, which corresponds to a volume excess power of ~ 10.3 W\/cm^3 Pd and heat absorption of 3.81 MJ\/cm^3 Pd or 350 eV\/atom Pd.<\/td>\n                            <td style=\"\">heat, Pd, D2O, seebeck, electrolysis, LiOD<\/td>\n                            <td style=\"\">Zhang, W-S., Zhang, Z.-F., Zhang, Z.-L. 2002 Primary calorimetric results on closed Pd\/D2O electrolysis systems by calvet calorimetry The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science Anomalous heat absorption was observed in a closed Pd|D2O electrolysis system by Calvet calorimetry. The average excess power was ~ 14.6 mW over 105 hours period, which corresponds to a volume excess power of ~ 10.3 W\/cm^3 Pd and heat absorption of 3.81 MJ\/cm^3 Pd or 350 eV\/atom Pd. heat, Pd, D2O, seebeck, electrolysis, LiOD <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_4\">\n                            <td style=\"\">1,814<\/td>\n                            <td style=\"\">Zhang, W-S.<\/td>\n                            <td style=\"\">Zhang, W-S., Zhang, Z.-F., Zhang, Z.-L.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Electrochemical effects on the resistance measurements of Pd\/H electrode<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><a href='http:\/\/lenr-canr.org\/acrobat\/ZhangWSelectroche.pdf'  target='_blank'><button class=''>OPEN<\/button><\/a><\/td>\n                            <td style=\"\">2003-07-09<\/td>\n                            <td style=\"\">Additional resistances contributed to that of PdHx electrode in an electrolyte using the direct current method are calculated. It is found that an electrode with a large ratio of length to radius, an active surface, a surrounding electrolyte with high conductance and high electrolysis current will induce substantial additional resistances.<\/td>\n                            <td style=\"\">Pd, H2O, resistivity, PdH<\/td>\n                            <td style=\"\">Zhang, W-S., Zhang, Z.-F., Zhang, Z.-L. 2002 Electrochemical effects on the resistance measurements of Pd\/H electrode The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science Additional resistances contributed to that of PdHx electrode in an electrolyte using the direct current method are calculated. It is found that an electrode with a large ratio of length to radius, an active surface, a surrounding electrolyte with high conductance and high electrolysis current will induce substantial additional resistances. Pd, H2O, resistivity, PdH <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_5\">\n                            <td style=\"\">1,815<\/td>\n                            <td style=\"\">Yue, S.<\/td>\n                            <td style=\"\">Yue, S., Qingfu, Z., Qingquan, G.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">The crystal change and \"excess heat\" production by long time electrolysis of heavy water with titanium cathode due to deuterium atom entering the lattice of titanium<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\">Ti, D2O, electrolysis, heat<\/td>\n                            <td style=\"\">Yue, S., Qingfu, Z., Qingquan, G. 2002 The crystal change and \"excess heat\" production by long time electrolysis of heavy water with titanium cathode due to deuterium atom entering the lattice of titanium The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science Ti, D2O, electrolysis, heat <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_6\">\n                            <td style=\"\">1,817<\/td>\n                            <td style=\"\">Yamamoto, H.<\/td>\n                            <td style=\"\">Yamamoto, H.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">A catalytic role of atomic oxygen on anomalous heat generation<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\">theory, Miles, hydrino<\/td>\n                            <td style=\"\">Yamamoto, H. 2002 A catalytic role of atomic oxygen on anomalous heat generation The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science theory, Miles, hydrino <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_7\">\n                            <td style=\"\">1,818<\/td>\n                            <td style=\"\">Yamada, H.<\/td>\n                            <td style=\"\">Yamada, H., Narita, S., Fujii, Y., Sato, T., Sasaki, S., Omori, T.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Production of Ba and several anomalous elements in Pd under light water electrolysis<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\">transmutation, electrolysis, H2O, Pd, heat, Na2CO3, <\/td>\n                            <td style=\"\">Yamada, H., Narita, S., Fujii, Y., Sato, T., Sasaki, S., Omori, T. 2002 Production of Ba and several anomalous elements in Pd under light water electrolysis The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science transmutation, electrolysis, H2O, Pd, heat, Na2CO3,  <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_8\">\n                            <td style=\"\">1,819<\/td>\n                            <td style=\"\">Wu, W.<\/td>\n                            <td style=\"\">Wu, W., Li, X. Z., Du, J. H., Tian, J., Hao, J. Z., Ma, B., Chen, J. P., Liu, B., Lei, S. Y.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Anomalous heat effect during permeation of deuterium gas through the palladium tube<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\"><\/td>\n                            <td style=\"\">diffusion, heat, permeation, IR camera, Pd<\/td>\n                            <td style=\"\">Wu, W., Li, X. Z., Du, J. H., Tian, J., Hao, J. Z., Ma, B., Chen, J. P., Liu, B., Lei, S. Y. 2002 Anomalous heat effect during permeation of deuterium gas through the palladium tube The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science diffusion, heat, permeation, IR camera, Pd <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n                <tr id=\"table_44_row_9\">\n                            <td style=\"\">1,820<\/td>\n                            <td style=\"\">Wei, Q.<\/td>\n                            <td style=\"\">Wei, Q., Cui, Y.O., Pan, G. H., Deng, X. Q., Li, X. Z.<\/td>\n                            <td style=\"\">2002<\/td>\n                            <td style=\"\">Excess heat in Pd\/C catalyst electrolysis experiment (Case-type cathode)<\/td>\n                            <td style=\"\">The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science<\/td>\n                            <td style=\"\">    1<\/td>\n                            <td style=\"\"><a href='http:\/\/lenr-canr.org\/acrobat\/WeiQexcessheat.pdf'  target='_blank'><button class=''>OPEN<\/button><\/a><\/td>\n                            <td style=\"\">2004-01-30<\/td>\n                            <td style=\"\">At high temperatures, the Pd\/C catalyst cathode (Case-type) electrolysis in heavy water might produce more excess heat than at room temperature. While the \"excess heat\" in Case-type experiment was apparently confirmed at the higher temperature, the method raised new problems with electrolysis near boiling temperatures.<\/td>\n                            <td style=\"\">heat, electrolysis, D2O, Case catalyst<\/td>\n                            <td style=\"\">Wei, Q., Cui, Y.O., Pan, G. H., Deng, X. Q., Li, X. Z. 2002 Excess heat in Pd\/C catalyst electrolysis experiment (Case-type cathode) The 9th International Conference on Cold Fusion, Condensed Matter Nuclear Science At high temperatures, the Pd\/C catalyst cathode (Case-type) electrolysis in heavy water might produce more excess heat than at room temperature. While the \"excess heat\" in Case-type experiment was apparently confirmed at the higher temperature, the method raised new problems with electrolysis near boiling temperatures. heat, electrolysis, D2O, Case catalyst <\/td>\n                            <td style=\"\"><a class='master_detail_column_btn'><button class=''>Details<\/button><\/a><\/td>\n                    <\/tr>\n    <\/tbody>        <!-- \/Table body -->\n\n        <!-- Table footer -->\n        \n        <!-- \/Table footer -->\n\n    <\/table>\n\n\n<div id=\"table_1_md_dialog\" style=\"display: none\">\n\n    <!-- .wdt-details-dialog-fields-block -->\n    <div class=\"row wdt-details-dialog-fields-block\">\n                    <!-- .form-group -->\n            <div\n                                    class=\"form-group col-xs-12\">\n                \n                <p  class=\"col-sm-3 table_1_Recnum\">\n                    Recnum:                <\/p>\n                <!-- .col-sm-9 -->\n                <div 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data-column_header=\"Details\"\n                             data-input_type=\"none\"\n                             style=\"\"\n                             class=\"detailColumn column-masterdetail \"\n                        ><\/div>\n                    <\/div>\n                <\/div>\n                <!-- .col-sm-9 -->\n            <\/div>\n            <!--\/ .form-group -->\n                    <\/div>\n    <!--\/ .wdt-details-dialog-fields-block -->\n\n<\/div>\n<\/div><style>\ntable.wpDataTable { table-layout: fixed !important; }\ntable.wpDataTable td, table.wpDataTable th { white-space: normal !important; }\ntable.wpDataTable td.numdata { text-align: right !important; }\n<\/style>\n<style>\n<\/style>\n\r\n","protected":false},"excerpt":{"rendered":"<p>The Ninth International Conference on Cold Fusion was held May 19 &#8211; 24, 2002 at Tsinghua University, Beijing, China. Several papers from it are in our library. Click here to jump down to the PROCEEDINGS Two views of a multilayer thin-film deposition experiment shown during\u00a0a visit to Great Wall Ti-Gold, Inc. The infrared thermal imaging [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":0,"parent":323,"menu_order":52,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-691","page","type-page","status-publish","hentry","entry"],"_links":{"self":[{"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=\/wp\/v2\/pages\/691","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=691"}],"version-history":[{"count":0,"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=\/wp\/v2\/pages\/691\/revisions"}],"up":[{"embeddable":true,"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=\/wp\/v2\/pages\/323"}],"wp:attachment":[{"href":"https:\/\/lenr-canr.org\/wordpress\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=691"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}