{"id":37158,"date":"2025-05-19T16:45:41","date_gmt":"2025-05-19T09:45:41","guid":{"rendered":"https:\/\/1dddev.com\/physicssci\/?post_type=ku-personnel&#038;p=37158"},"modified":"2025-05-19T16:45:42","modified_gmt":"2025-05-19T09:45:42","slug":"%e0%b8%9c%e0%b8%a8-%e0%b8%94%e0%b8%a3-%e0%b8%9e%e0%b8%87%e0%b8%a8%e0%b8%81%e0%b8%a3-%e0%b8%88%e0%b8%b1%e0%b8%99%e0%b8%97%e0%b8%a3%e0%b8%b1%e0%b8%95%e0%b8%99%e0%b9%8c","status":"publish","type":"ku-personnel","link":"https:\/\/1dddev.com\/physicssci\/ku-personnel\/%e0%b8%9c%e0%b8%a8-%e0%b8%94%e0%b8%a3-%e0%b8%9e%e0%b8%87%e0%b8%a8%e0%b8%81%e0%b8%a3-%e0%b8%88%e0%b8%b1%e0%b8%99%e0%b8%97%e0%b8%a3%e0%b8%b1%e0%b8%95%e0%b8%99%e0%b9%8c\/","title":{"rendered":"\u0e1c\u0e28.\u0e14\u0e23.\u0e1e\u0e07\u0e28\u0e01\u0e23 \u0e08\u0e31\u0e19\u0e17\u0e23\u0e31\u0e15\u0e19\u0e4c"},"content":{"rendered":"\n<p><strong>\u0e2b\u0e49\u0e2d\u0e07: <\/strong>SC45-681<\/p>\n\n\n\n<h2 class=\"wp-block-heading\">\u0e1b\u0e23\u0e30\u0e27\u0e31\u0e15\u0e34\u0e2a\u0e48\u0e27\u0e19\u0e15\u0e31\u0e27<\/h2>\n\n\n\n<p><strong>\u0e01\u0e32\u0e23\u0e28\u0e36\u0e01\u0e29\u0e32<\/strong><\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>\u0e27\u0e17.\u0e1a.(\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c)<\/li>\n\n\n\n<li>\u0e27\u0e17.\u0e21.(\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c)<\/li>\n\n\n\n<li>\u0e1b\u0e23.\u0e14.(\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c)<\/li>\n<\/ul>\n\n\n\n<p><strong>\u0e07\u0e32\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22<\/strong><\/p>\n\n\n\n<p><strong>\u0e2b\u0e31\u0e27\u0e2b\u0e19\u0e49\u0e32\u0e42\u0e04\u0e23\u0e07\u0e01\u0e32\u0e23\u0e27\u0e34\u0e08\u0e31\u0e22&nbsp;<\/strong>&nbsp; &nbsp; &nbsp; &nbsp;<\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Low-cost vibrating sample magnetometer<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e2a\u0e33\u0e19\u0e31\u0e01\u0e07\u0e32\u0e19\u0e04\u0e13\u0e30\u0e01\u0e23\u0e23\u0e21\u0e01\u0e32\u0e23\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e2b\u0e48\u0e07\u0e0a\u0e32\u0e15\u0e34 \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2551<\/em><\/li>\n\n\n\n<li>Studies of magnetocaloric effect for refrigeration application<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e04\u0e13\u0e30\u0e27\u0e34\u0e17\u0e22\u0e32\u0e28\u0e32\u0e2a\u0e15\u0e23\u0e4c \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2551<\/em><\/li>\n\n\n\n<li>Studies of magnetoelectric effect in TbFe-PZT thin film for magnetic recording read head application\u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e28\u0e39\u0e19\u0e22\u0e4c\u0e27\u0e34\u0e08\u0e31\u0e22\u0e23\u0e48\u0e27\u0e21\u0e40\u0e09\u0e1e\u0e32\u0e30\u0e17\u0e32\u0e07\u0e14\u0e49\u0e32\u0e19\u0e2a\u0e48\u0e27\u0e19\u0e1b\u0e23\u0e30\u0e01\u0e2d\u0e1a\u0e2e\u0e32\u0e23\u0e4c\u0e14\u0e14\u0e34\u0e2a\u0e01\u0e4c\u0e44\u0e14\u0e23\u0e1f\u0e4c (I\/UCRC in HDD Components) \u0e04\u0e13\u0e30\u0e27\u0e34\u0e28\u0e27\u0e01\u0e23\u0e23\u0e21\u0e28\u0e32\u0e2a\u0e15\u0e23\u0e4c \u0e21\u0e2b\u0e32\u0e27\u0e34\u0e17\u0e22\u0e32\u0e25\u0e31\u0e22\u0e02\u0e2d\u0e19\u0e41\u0e01\u0e48\u0e19 \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2554-2555<\/em><\/li>\n\n\n\n<li>Giant Magnetoimpedance Effect in Electrodeposited NiFe Wires\u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e2a\u0e16\u0e32\u0e1a\u0e31\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e25\u0e30\u0e1e\u0e31\u0e12\u0e19\u0e32\u0e41\u0e2b\u0e48\u0e07\u0e21\u0e2b\u0e32\u0e27\u0e34\u0e17\u0e22\u0e32\u0e25\u0e31\u0e22\u0e40\u0e01\u0e29\u0e15\u0e23\u0e28\u0e32\u0e2a\u0e15\u0e23\u0e4c \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2555<\/em><\/li>\n\n\n\n<li>Design and construction of alternating gradient magnetometer for magnetic properties characterization of nanomaterials<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e2a\u0e16\u0e32\u0e1a\u0e31\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e25\u0e30\u0e1e\u0e31\u0e12\u0e19\u0e32\u0e41\u0e2b\u0e48\u0e07\u0e21\u0e2b\u0e32\u0e27\u0e34\u0e17\u0e22\u0e32\u0e25\u0e31\u0e22\u0e40\u0e01\u0e29\u0e15\u0e23\u0e28\u0e32\u0e2a\u0e15\u0e23\u0e4c \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2556<\/em><\/li>\n\n\n\n<li>Structure and magnetoelectric properties of Teternol-D\/PZT particulate\u00a0 composites<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e2a\u0e16\u0e32\u0e1a\u0e31\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e25\u0e30\u0e1e\u0e31\u0e12\u0e19\u0e32\u0e41\u0e2b\u0e48\u0e07\u0e21\u0e2b\u0e32\u0e27\u0e34\u0e17\u0e22\u0e32\u0e25\u0e31\u0e22\u0e40\u0e01\u0e29\u0e15\u0e23\u0e28\u0e32\u0e2a\u0e15\u0e23\u0e4c \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2557<\/em><\/li>\n\n\n\n<li>Design and construction of an instrument for locating buried pipe<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e1a\u0e23\u0e34\u0e29\u0e31\u0e17 \u0e1b\u0e15\u0e17. \u0e08\u0e33\u0e01\u0e31\u0e14 (\u0e21\u0e2b\u0e32\u0e0a\u0e19)<\/em><em>\u00a0\u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2558<\/em><\/li>\n\n\n\n<li>Study the possibility of acoustic detection techniques to track the cleaning device inside the pipeline (PIG)\u00a0<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e1a\u0e23\u0e34\u0e29\u0e31\u0e17 \u0e1b\u0e15\u0e17. \u0e08\u0e33\u0e01\u0e31\u0e14 (\u0e21\u0e2b\u0e32\u0e0a\u0e19)\u00a0\u00a0\u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2558<\/em><\/li>\n\n\n\n<li>Prototype of an instrument for locating buried pipe\u00a0<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e1a\u0e23\u0e34\u0e29\u0e31\u0e17 \u0e1b\u0e15\u0e17. \u0e08\u0e33\u0e01\u0e31\u0e14 (\u0e21\u0e2b\u0e32\u0e0a\u0e19)\u00a0\u00a0\u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2559<\/em><\/li>\n\n\n\n<li>Effects of Sonication and Annealing on Magnetic Properties and Tunneling Magnetoresistance of Exchange Biased Thin Films\u00a0<em>\u00a0\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 Western Digital (Thailand) Co., Ltd.\u00a0\u00a0\u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2559<\/em><\/li>\n\n\n\n<li>\u00a0Fabrication of Magnetocaloric Materials for Magnetic Refrigeration \u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e28\u0e39\u0e19\u0e22\u0e4c\u0e04\u0e27\u0e32\u0e21\u0e40\u0e1b\u0e47\u0e19\u0e40\u0e25\u0e34\u0e28\u0e17\u0e32\u0e07\u0e14\u0e49\u0e32\u0e19\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c\u00a0\u00a0\u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2560-2563<\/em><\/li>\n<\/ul>\n\n\n\n<p><strong>\u0e1c\u0e39\u0e49\u0e23\u0e48\u0e27\u0e21\u0e27\u0e34\u0e08\u0e31\u0e22<\/strong><\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Studies of giant magnetoimpedance effect for sensing application\u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e2a\u0e33\u0e19\u0e31\u0e01\u0e07\u0e32\u0e19\u0e04\u0e13\u0e30\u0e01\u0e23\u0e23\u0e21\u0e01\u0e32\u0e23\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e2b\u0e48\u0e07\u0e0a\u0e32\u0e15\u0e34 \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2548<\/em><\/li>\n\n\n\n<li>Development of X-ray Absorption Spectroscopy technique at the Siam Photon Laboratory to investigate colour-causing traces-element in gem corundum\u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 National Synchrotron Research Center \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2550-2551<\/em><\/li>\n\n\n\n<li>\u0e25\u0e31\u0e01\u0e29\u0e13\u0e30\u0e42\u0e04\u0e23\u0e07\u0e2a\u0e23\u0e49\u0e32\u0e07\u0e41\u0e25\u0e30\u0e21\u0e25\u0e17\u0e34\u0e19\u0e23\u0e30\u0e14\u0e31\u0e1a\u0e44\u0e21\u0e42\u0e04\u0e23-\u0e19\u0e32\u0e42\u0e19\u0e43\u0e19\u0e1e\u0e25\u0e2d\u0e22\u0e04\u0e2d\u0e23\u0e31\u0e19\u0e14\u0e31\u0e21\u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e2a\u0e33\u0e19\u0e31\u0e01\u0e07\u0e32\u0e19\u0e04\u0e13\u0e30\u0e01\u0e23\u0e23\u0e21\u0e01\u0e32\u0e23\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e2b\u0e48\u0e07\u0e0a\u0e32\u0e15\u0e34 \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13\u00a02551-2552<\/em><\/li>\n\n\n\n<li>\u0e01\u0e32\u0e23\u0e40\u0e1b\u0e25\u0e35\u0e48\u0e22\u0e19\u0e41\u0e1b\u0e25\u0e07\u0e21\u0e25\u0e17\u0e34\u0e19\u0e23\u0e30\u0e14\u0e31\u0e1a\u0e44\u0e21\u0e42\u0e04\u0e23-\u0e19\u0e32\u0e42\u0e19\u0e40\u0e21\u0e15\u0e23\u0e2b\u0e25\u0e31\u0e07\u0e08\u0e32\u0e01\u0e01\u0e32\u0e23\u0e40\u0e1c\u0e32\u0e43\u0e19\u0e1e\u0e25\u0e2d\u0e22\u0e04\u0e2d\u0e23\u0e31\u0e19\u0e14\u0e31\u0e21\u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19<\/em><em>\u0e2a\u0e16\u0e32\u0e1a\u0e31\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e25\u0e30\u0e1e\u0e31\u0e12\u0e19\u0e32\u0e41\u0e2b\u0e48\u0e07\u0e21\u0e2b\u0e32\u0e27\u0e34\u0e17\u0e22\u0e32\u0e25\u0e31\u0e22\u0e40\u0e01\u0e29\u0e15\u0e23\u0e28\u0e32\u0e2a\u0e15\u0e23\u0e4c \u0e1b\u0e23\u0e30\u0e08\u0e33\u0e1b\u0e35\u0e07\u0e1a\u0e1b\u0e23\u0e30\u0e21\u0e32\u0e13 2555<\/em><\/li>\n\n\n\n<li>\u0e42\u0e04\u0e23\u0e07\u0e01\u0e32\u0e23\u0e28\u0e36\u0e01\u0e29\u0e32\u0e1e\u0e37\u0e49\u0e19\u0e1c\u0e34\u0e27\u0e2d\u0e31\u0e0d\u0e21\u0e13\u0e35\u0e23\u0e30\u0e14\u0e31\u0e1a\u0e44\u0e21\u0e42\u0e04\u0e23-\u0e19\u0e32\u0e42\u0e19\u0e40\u0e21\u0e15\u0e23\u0e14\u0e49\u0e27\u0e22\u0e40\u0e17\u0e04\u0e19\u0e34\u0e04\u0e02\u0e31\u0e49\u0e19\u0e2a\u0e39\u0e07\u0e40\u0e1e\u0e37\u0e48\u0e2d\u0e2a\u0e19\u0e31\u0e1a\u0e2a\u0e19\u0e38\u0e19\u0e01\u0e32\u0e23\u0e15\u0e23\u0e27\u0e08\u0e27\u0e34\u0e40\u0e04\u0e23\u0e32\u0e30\u0e2b\u0e4c\u00a0<em>\u0e41\u0e2b\u0e25\u0e48\u0e07\u0e17\u0e38\u0e19 \u0e2a\u0e16\u0e32\u0e1a\u0e31\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e41\u0e25\u0e30\u0e1e\u0e31\u0e12\u0e19\u0e32\u0e2d\u0e31\u0e0d\u0e21\u0e13\u0e35\u0e41\u0e25\u0e30<\/em><\/li>\n<\/ul>\n\n\n\n<p><strong>\u0e1c\u0e25\u0e07\u0e32\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e15\u0e35\u0e1e\u0e34\u0e21\u0e1e\u0e4c<\/strong><\/p>\n\n\n\n<p><strong>\u0e1c\u0e25\u0e07\u0e32\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e17\u0e35\u0e48\u0e15\u0e35\u0e1e\u0e34\u0e21\u0e1e\u0e4c\u0e43\u0e19\u0e27\u0e32\u0e23\u0e2a\u0e32\u0e23\u0e23\u0e30\u0e14\u0e31\u0e1a\u0e19\u0e32\u0e19\u0e32\u0e0a\u0e32\u0e15\u0e34 &nbsp;<\/strong><\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2004. Giant magnetoimpedance in silicon steels.\u00a0J. magn. Magn. Mater. 281: 399-404.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2006. Effects of thickness and heat treatments on giant magnetoimpedance of electrodeposited cobalt on silver wires.\u00a0IEEE Trans. Magn. 42: 358-362.<\/li>\n\n\n\n<li>Siristhitkul, C. and\u00a0P. Jantaratana. 2007. Giant magnetoimpedance of electrodeposited Co\/Cu\/Co on Ag wires.\u00a0J. Phys. D: Appl. Phys. 40:\u00a04431-4435.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2008. Low-cost sensors based on the GMI effect in recycled transformer cores.\u00a0Sensors 8: 1575-1584.<\/li>\n\n\n\n<li>Jantaratana, P.,\u00a0P. Dararutana, W. Wongkokua, S. Pongkrapan amd P. Wathanakul. 2008. Defect-induced properties of doped alpha alumina samples.\u00a0Adv. Mater. Res. 55-57: 801\u2013804.<\/li>\n\n\n\n<li>Jantaratana, P., N. G. Bebenin and G. V. Kurlyandskaya. 2009. Magnetoimpedance and magnetization processes of FeCoNi electroplated tubes.\u00a0J. Appl. Phys. 105 (013908): 1-6.\u00a0<\/li>\n\n\n\n<li>Sirisathitkul, C.\u00a0and P. Jantaratana.\u00a02009. Enhancement of GMI Effect in Silicon Steels by Furnace Annealing.\u00a0J. Mater. Sci. Technol. 25 (05): 619\u2013621.<\/li>\n\n\n\n<li>Sirisathitkul, C. and\u00a0P. Jantaratana.\u00a02009. Magnetoimpedance of Electroplated Wires with Large Core Diameters.\u00a0J. Mater. Sci. Technol. 25 (06): 825\u2013828.<\/li>\n\n\n\n<li>Sirisathitkul, C., S. Piromrak and\u00a0P. Jantaratana. 2011. Magnetoimpedance of Cobalt-Coated Silicon Steels.\u00a0Physica B 406: 155\u2013158.<\/li>\n\n\n\n<li>Jantaratana, P., C. Sirisathitkul, A. Hunyek and S. Maensiri. 2011. Electric and magnetic properties of recycled NdFeB-natural rubber composites.\u00a0Adv. Comp. lett. 20(2): 48\u201351.<\/li>\n\n\n\n<li>Chandarak, S., S. Pojprapai, S. Srilomsak, P. Jantaratana, S. Rujirawat and R. Yimnirun. 2011. Magnetoelectric properties of Cu- and Mn-doped 0.75BiFeO3\u20130.25BaTiO3\u00a0multiferroic ceramics.\u00a0Ferroelectrics 419:\u00a070-75.<\/li>\n\n\n\n<li>Khamkongkaeo, A., P. Jantaratana, C. Sirisathitkul, T. Yamwong and S. Maensiri. 2011. Frequency-dependent magnetoelectricity of CoFe2O4\u2212BaTiO3\u00a0particulate composites.\u00a0Trans. Nonferous Met. Soc. China 21: 2438-2442.<\/li>\n\n\n\n<li>Kurlyandskaya, G.V.,\u00a0P. Jantaratana\u00a0and N.G.Bebenin. 2012. Magnetic properties and magnetoimpedance of electroplated wires.\u00a0Solid State Phenomena 190: 581-584.<\/li>\n\n\n\n<li>Rugmai, S., C. Sirisathitkul, K. Chokprosombat, P. Rangsanga, P. Harding, T. Srikhirin and\u00a0P. Jantaratana.\u00a02012. Small-angle x-ray scattering spectra of iron-based magnetic fluids.\u00a0Mater Tehnol 46(3): 369-373.<\/li>\n\n\n\n<li>Sririsathitkul, C.,\u00a0P. Jantaratana\u00a0and N. Muensit. 2012. Dielectric and magnetic properties of polyvinylidene fluoride polymer composites highly loaded with nickel.\u00a0Sci Eng Compos Mater 19: 255-258.<\/li>\n\n\n\n<li>Chandarak, S., J. Jutimoosik, A. Bootchanont, M. Unruan,\u00a0P. Jantaratana, S. Priya, S. Srilomsak, S. Srilomsak and R. Yimnirun. 2013. Local structure of magnetoelectric BiFeO3\u2013BaTiO3 ceramics probed by synchrotron X-Ray absorption spectroscopy.\u00a0J Supercond Nov Magn 26(2): 455-461.\u00a0<\/li>\n\n\n\n<li>Wongmaneerung, R.,\u00a0P.\u00a0 Jantaratana, R. Yimnirun and S. Ananta. 2013. Phase formation and magnetic properties of bismuth ferrite\u2013lead titanate multiferroic composites.\u00a0J Supercond Nov Magn 26(2): 371-379.\u00a0<\/li>\n\n\n\n<li>Hunyek, A., C. Sirisathitkul and\u00a0P. Jantaratana. 2013. Magnetic and dielectric properties of natural rubber and polyurethane composites filled with cobalt ferrite. Plast Rubber Compos 42(3): 89-92.<\/li>\n\n\n\n<li>Noodam, J., C. Sirisathitkul, N. Matan, W.\u00a0Rattanasakulthong\u00a0and\u00a0P. Jantaratana.\u00a02013. Magnetic properties of NdFeB-coated rubberwood composites.\u00a0Int J\u00a0 Miner Metall Mater 20(1):\u00a065-70.<\/li>\n\n\n\n<li>Homthong, P.,\u00a0P. Jantaratana\u00a0and C. Sirisathitckul. 2013. Effects of alternating magnetic field on magnetoelectricity of sputtered TbFe2\/PZT\/TbFe2 laminate composite.\u00a0Optoelectron Adv Mat 7(1-2): 100 \u2013 103.<\/li>\n\n\n\n<li>Kurlyandskaya. G.,\u00a0P. Jantaratana, M. A. Cerdeira and V. Va\u00b4kovskiy. 2013. Giant Magnetoimpedance of Cube\/Feconi Electroplated Wires: Focus on Angular Sensoric.\u00a0World J Condens Matt Phys 3: 21-27.<\/li>\n\n\n\n<li>Jantaratana, P.,\u00a0J. Noodam and C. Sirisathitkul. 2013. Magnetic hysteresis and electrical impedance spectra of hard magnetic SmCo5 &#8211;\u00a0soft magnetic Co30Ag70\u00a0composites.\u00a0Rare Metal Mat Eng 42 (1):19-22.<\/li>\n\n\n\n<li>Prasatkhetragarn, A., A. Arthan,\u00a0P. Jantaratana, N. Vittayakorn, B. Yotburut and R. Yimnirun. 2013. Ferroelectromagnetic characteristic of Na-doped 0.75BiFeO3-0.25BaTiO3\u00a0multiferroic ceramics, Ceramics International 39: S245-S248.<\/li>\n\n\n\n<li>Leenakul, W.,\u00a0 J. Ruangsuriya,\u00a0P. Jantaratana\u00a0and K. Pengpat. 2013. Fabrication and characterization of ferrimagnetic bioactive glass-ceramic containing BaFe12O19.\u00a0Ceramics International 39: S201-S205.<\/li>\n\n\n\n<li>Prasatkhetragarn, A., P. Muangkonkad, P. Aommongkol, P. Jantaratana, N. Vittayakorn and R. Yimnirun. 2013. Investigation on ferromagnetic and ferroelectric properties of (La, K)-doped BiFeO3\u2013BaTiO3\u00a0solid solution.\u00a0Ceramics International 39: S249-S252.<\/li>\n\n\n\n<li>Cerdeira, M.A.,\u00a0P. Jantaratana, V. O. Vas&#8217;kovskiy and G. Kurlyandskaya. 2013. FeCoNi Electroplated Wire Based Magnetoimpedance Sensitive Element.\u00a0Sensor Lett. 11(1): 180-183.<\/li>\n\n\n\n<li>Leenakul,W., P Intawin, J. Ruangsuriya,\u00a0P. Jantaratana\u00a0and K. Pengpat. 2013. Magnetic bioactive SrFe12O19-SiO2-CaO-Na2O-P2O5\u00a0glass-ceramics for hyperthermia treatment of bone cancer.\u00a0Integr. Ferroelectr.\u00a0148:\u00a081-89.<\/li>\n\n\n\n<li>Intawin, P., W. Leenakul,\u00a0P. Jantaratana\u00a0and K. Pengpat. 2013. Fabrication and Magnetic Properties of P2O5-CaO-Na2O Bioactive glass ceramic containing BaFe12O19.\u00a0Integr. Ferroelectr.\u00a0148:\u00a0171\u2013177.<\/li>\n\n\n\n<li>Prasatkhetragarn, A.,\u00a0P. Jantaratana, N. Vittayakorn, B. Yotburut and R. Yimnirun. 2013. Ferroelectric and ferromagnetic properties of K-doped 0.7BiFeO3\u20130.3BaTiO3\u00a0multiferroic ceramics.\u00a0Ferroelectrics\u00a0451: 109\u2013115.<\/li>\n\n\n\n<li>Wongmaneerung, R.,\u00a0P. Jantaratana,\u00a0R. Yimnirun\u00a0and\u00a0S. Ananta. 2014. Phase formation, microstructure and magnetic properties of (1-x)BiFeO3\u2013x(0.9Pb(Mg1\/3Nb2\/3)O3\u20130.1PbTiO3) system.\u00a0Ceram. Inter.\u00a040: 2299-2304.<\/li>\n\n\n\n<li>Phromchuai, S., C. Sirisathitkul and\u00a0\u00a0P. Jantaratana. 2014. Effect of gadolinium substitution on magnetocaloric properties of lanthanum strontium manganites.\u00a0Dig. J. Nanomater. Bio. 9: 245 \u2013 250.<\/li>\n\n\n\n<li>Tangwatanakul, W., C. Sirisathitkul,\u00a0P. Jantaratana\u00a0and W. Limphirat. 2014. Synchrotron X-ray absorption of Iron oxides Synthesised by Ultrasound Assisted Coprecipitation: Effects of Temperature and Surfactant. Mater. Res.\u00a0Innov. 18: 547-551.<\/li>\n\n\n\n<li>Wongmaneerung, R., J.\u00a0Padchasri, R. Tipakontitikul, T.H. Loan,\u00a0P. Jantaratana, R. Yimnirun and S. Ananta. 2014. Phase formation, dielectric and magnetic properties of bismuth ferrite-lead magnesium niobate multiferroic composites,\u00a0J. Alloy. Compd.\u00a0608: 1-7.<\/li>\n\n\n\n<li>Chotibhawaris, T.,\u00a0T. Luangvaranunt,\u00a0P.\u00a0Jantaratana\u00a0and Y.\u00a0Boonyongmaneerat. 2014. Influence of the electrodeposited Co-Fe alloys\u2019 characteristics on their magnetic properties.\u00a0Adv. Mater. Res. 1025-1026: 709-716.<\/li>\n\n\n\n<li>Jongprateep O., T. Khongnakhon,\u00a0P. Jantaratana\u00a0and S. Rugthaicharoencheep. 2014. Effects of Ca addition on chemical composition, microstructure and dielectric properties of BaTiO3.\u00a0Appl. Mech. Mater. 575: 231-237<\/li>\n\n\n\n<li>Nonkumwong, J., S. Ananta,\u00a0P. Jantaratana, S. Phumying, S. Maensiri and L. Srisombat. 2015. Phase formation, morphology and magnetic properties of MgFe2O4\u00a0nanoparticles\u00a0synthesized by\u00a0hydrothermal\u00a0technique.\u00a0J.\u00a0magn. Magn. Mater. 381:226-234.<\/li>\n\n\n\n<li>Unruan, S., S. Srilomsak, S.\u00a0Prkya,\u00a0P. Jantaratana, S. Rujirawat and R. Yimnirun. 2015. Local\u00a0tructure\u00a0investigation and properties of Mn-doped BiFeO3\u2013BaTiO3\u00a0ceramics.\u00a0Ceram. Inter. 41: 4087-4092.<\/li>\n\n\n\n<li>Sukonrat, P., C. Sirisathitkul, W. Rattanasakulthong,\u00a0P. Jantaratana, and C. Sriphung. 2015. Magnetic properties of sputtered cobalt films on x-ray lithographic substrates.\u00a0Dig. J. Nanomater. Bios. 10: 1-9.<\/li>\n\n\n\n<li>Tangwatanakul, W., K. Chokprasombat,\u00a0C. Sirisathitkul,\u00a0P.\u00a0Jantaratana\u00a0\u00a0and\u00a0Y. Sirisathitkul. 2016. Magnetic phase transition of annealed FePt based nanoparticles synthesized by using Fe(b-diketonate)3.\u00a0\u00a0J. Alloy. Compd.\u00a0654:\u00a0234-239.<\/li>\n\n\n\n<li>Wongmaneerung, R., \u00a0R. Tipakontitikul, P. Jantaratana, \u00a0A. Bootchanont, J. Jutimoosik, R. Yimnirun, S. Ananta. 2016, Structure and phase formation behavior and dielectric and magnetic properties of lead iron tantalate-lead zirconate titanate multiferroic ceramics.\u00a0Mater. Res. Bull. 75:91-99.<\/li>\n\n\n\n<li>Nonkumwong J., P. Pakawanit, A. Wipatanawin,\u00a0P. Jantaratana, S. Ananta and L. Srisombat. 2016. Synthesis and cytotoxicity study of magnesium ferrite-gold core-shell nanoparticles.\u00a0Mater. Sci. Eng. C\u00a061:123-132.<\/li>\n\n\n\n<li>Veranitisagul C., W. Wattanathana, W. Nantharak, P. Jantaratana, A. Laobuthee and N. Koonsaeng. 2016. BaFe12O19\u00a0from thermal decomposition of bimetallic triethanolamine complex as magnetic filler for bioplastics.\u00a0Mater. Chem. Phys.\u00a0177: 48-55.<\/li>\n\n\n\n<li>\u00a0Kiatphuengporn S.,\u00a0P. Jantaratana, J. Limtrakul and M. Chareonpanich. 2016. Magnetic field-enhanced catalytic CO2\u00a0hydrogenation and selective conversion to light hydrocarbons over Fe\/MCM-41 catalysts.\u00a0Chem. Eng. J.\u00a0306: 866-875.<\/li>\n\n\n\n<li>Donphaia W., N. Piriyawatea, T. Witoona,b,\u00a0P. Jantaratana, V. Varabuntoonvita and M. Chareonpanich. 2016. \u00a0Effect of magnetic field on CO2\u00a0conversion over Cu-ZnO\/ZrO2 catalyst in\u00a0hydrogenation\u00a0reaction.\u00a0J. CO2. Util.\u00a016: 204-211.<\/li>\n\n\n\n<li>Intawin P., W. Leenakul, P. Yongsiri,\u00a0P. Jantaratana, S. Eitssayeam, G. Rujijanagul and K. Pengpat. 2016.\u00a0Fabrication and Characterization of BaTiO3\u2013Ni0. 8Zn0. 2Fe2O4\u2013B2O3\u2013Na2O\u2013SiO2\u00a0Multiferroic Glass Ceramics.\u00a0J. Nanosci. Nanotechnol.\u00a016: 12866-12870.\u00a0<\/li>\n\n\n\n<li>Kiatphuengporn S., W. Donphai,\u00a0P. Jantaratana, N.Yigit, K. Fottinger, G. Rupprechter and M. Chareonpanich. 2017. Cleaner production of methanol from carbon dioxide over copper and iron supported MCM-41 catalysts using innovative integrated magnetic field-packed bed reactor.\u00a0 J. Clean. Prod.\u00a0142: 1222-1233.<\/li>\n\n\n\n<li>Srakaew N.,\u00a0P. Jantaratana, P. Nipakul and C. Sirisathitkul. 2017. Structural and magnetic properties of FexNi100-x\u00a0alloys synthesized using Al as a reducing metal.\u00a0J. Magn. Magn. Mater. 435: 201-205.<\/li>\n\n\n\n<li>Jongprateep, O, N. Sato, J. Palomas and\u00a0P. Jantaratana, 2017, Chemical composition-microstructure-dielectric constant relations of mg-doped calcium titanate synthesized by solid state reaction technique,\u00a0Key Eng. Mater.\u00a0751: 390-396.<\/li>\n<\/ul>\n\n\n\n<p><strong>\u0e1c\u0e25\u0e07\u0e32\u0e19\u0e27\u0e34\u0e08\u0e31\u0e22\u0e17\u0e35\u0e48\u0e15\u0e35\u0e1e\u0e34\u0e21\u0e1e\u0e4c\u0e43\u0e19\u0e27\u0e32\u0e23\u0e2a\u0e32\u0e23\u0e23\u0e30\u0e14\u0e31\u0e1a\u0e0a\u0e32\u0e15\u0e34 \u0e41\u0e25\u0e30\u0e01\u0e32\u0e23\u0e1b\u0e23\u0e30\u0e0a\u0e38\u0e21\u0e27\u0e34\u0e0a\u0e32\u0e01\u0e32\u0e23<\/strong><\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2006. Giant magnetoimpedance in electrodeposited cobalt on silver wires. Walailak J. Sci. &amp; Tech. 3: 261-270.<\/li>\n\n\n\n<li>Piromrak, S.,\u00a0P. Jantaratana\u00a0and C. Sirisathitkul. 2007. Magnetic properties of cobalt-coated silicon steels prepared by electrodeposition. Walailak J. Sci. &amp; Tech. 4(1): 123-138.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a0and S. Pasuksan. 2009. Effect of heat treatments on magnetoimpedance of FeNiMoB ribbons. Kasetsart J. (Nat. Sci.) 43: 205\u2013209.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2003 . Magnetoimpedance in Transformer Cores. The 29th Congress on Science and Technology of Thailand.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2005. Effect of Hard Magnetic Materials on Magnetoimpedance in CoAg Mechanical Alloys. The 31st Congress on Science and Technology of Thailand.<\/li>\n\n\n\n<li>Jantaratana, P.,\u00a0Y. Pansong and C. Sirisathitkul. 2004. Giant Magnetoimpedance Effect in Electrodeposited Cobalt on Silver Wires. The International Conference on Smart Materials (SmartMat-\u201904): 471-473.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2004. Application of Silicon Steel Based on Its Giant Magnetoimpedance Effect. The Third Thailand Materials Science and Technology Conference (MSAT III): 90-91.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a02007. Magnetoelastic Effects in Metglas 2826MB and Applications to the Remote Sensing of Mass Loading. The 33rd Congress on Science and Technology of Thailand.<\/li>\n\n\n\n<li>Jantaratana, P.,\u00a0S. Piromrak and C. Sirisathitkul. 2009. Detection of magnetoelastic waves through silicon steels by acoustic method. Thai. J. Phys. 4: 1-2.<\/li>\n\n\n\n<li>Jantaratana, P.\u00a0and C. Sirisathitkul. 2008. Effects of Cobalt Shell Thickness and Copper Core Diameter on the Magnetoimpedance of Electroplated Wires. Asian Magnetic Conference 2008 (AMC2008), Busan, Korea.<\/li>\n\n\n\n<li>Kurlyandskaya, G.V.,\u00a0P. Jantaratana, N.G. Bebenin, V.O. Vas&#8217;kovskiy. 2011. Magnetic properties and magnetoimpedance of electroplate wires. Moscow Interanational Symposium on Magnetism.<\/li>\n\n\n\n<li>Promchuai, S. and\u00a0P. Juntaratana, 2011. Magnetocaloric effect in La0.55Gd0.2Sr0.25MnO3. Siam Physics Congress SPC2011.<\/li>\n\n\n\n<li>Phasingsri, P. and\u00a0P. Jantaratana, 2012. The Study and design of non-destructive testing based on eddy current. Siam Physics Congress SPC2012.<\/li>\n\n\n\n<li>Yamyim, R. and\u00a0P. Jantaratana. 2012. Design and construction of resonance vibrating sample magnetometer. The 38th Congress on Science and Technology of Thailand.<\/li>\n\n\n\n<li>Prasatkhetragarn, A.,\u00a0\u00a0P. Jantaratana, \u00a0N. Vittayakorn, \u00a0B. Yotburut and \u00a0R. Yimnirun. 2012. Ferroelectric and ferromagnetic properties of lead free K-doped 0.7BiFeO3\u20130.3BaTiO3\u00a0multiferroic ceramics. The 38th Congress on Science and Technology of Thailand.<\/li>\n\n\n\n<li>Wongmaneerung, R.,\u00a0P. Jantaratana, \u00a0R. Yimnirun and S. Ananta. 2012. Magnetic properties of (1-x)BF-xPMN multiferroic composites. The 38th Congress on Science and Technology of Thailand.<\/li>\n\n\n\n<li>Munpollasri, N and\u00a0P. Jantaratana. 2012. Ambient field-compensated Helmholtz coil for low magnetic field calibration. Siam Physics Congress SPC2013.<\/li>\n<\/ul>\n\n\n\n<p><strong>\u0e07\u0e32\u0e19\u0e2a\u0e2d\u0e19<\/strong><\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>01420112\u00a0\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c\u0e17\u0e31\u0e48\u0e27\u0e44\u0e1b II (General Physics II )<\/li>\n\n\n\n<li>01420113\u00a0\u0e1b\u0e0f\u0e34\u0e1a\u0e31\u0e15\u0e34\u0e01\u0e32\u0e23\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c I (Laboratory in Physics I)<\/li>\n\n\n\n<li>01420114\u00a0\u0e1b\u0e0f\u0e34\u0e1a\u0e31\u0e15\u0e34\u0e01\u0e32\u0e23\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c II (Laboratory in Physics II)<\/li>\n\n\n\n<li>01420262 \u0e44\u0e1f\u0e1f\u0e49\u0e32\u0e41\u0e21\u0e48\u0e40\u0e2b\u0e25\u0e47\u0e01\u0e20\u0e32\u0e04\u0e1b\u0e0f\u0e34\u0e1a\u0e31\u0e15\u0e34\u0e01\u0e32\u0e23 (Laboratory in Electromagnetics)<\/li>\n\n\n\n<li>01420344\u00a0\u0e2d\u0e34\u0e40\u0e25\u0e47\u0e01\u0e17\u0e23\u0e2d\u0e19\u0e34\u0e01\u0e2a\u0e4c\u0e40\u0e0a\u0e34\u0e07\u0e40\u0e2a\u0e49\u0e19\u0e20\u0e32\u0e04\u0e1b\u0e0f\u0e34\u0e1a\u0e31\u0e15\u0e34\u0e01\u0e32\u0e23 (Laboratory in Linear Electronics)<\/li>\n\n\n\n<li>01420347\u00a0\u0e2d\u0e34\u0e40\u0e25\u0e47\u0e01\u0e17\u0e23\u0e2d\u0e19\u0e34\u0e01\u0e2a\u0e4c\u0e40\u0e0a\u0e34\u0e07\u0e40\u0e25\u0e02 (Digital Electronics)<\/li>\n\n\n\n<li>01420348\u00a0\u0e2d\u0e34\u0e40\u0e25\u0e47\u0e01\u0e17\u0e23\u0e2d\u0e19\u0e34\u0e01\u0e2a\u0e4c\u0e40\u0e0a\u0e34\u0e07\u0e40\u0e25\u0e02\u0e20\u0e32\u0e04\u0e1b\u0e0f\u0e34\u0e1a\u0e31\u0e15\u0e34\u0e01\u0e32\u0e23 (Laboratory in Digital Electronics)<\/li>\n\n\n\n<li>01420349\u00a0\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c\u0e02\u0e2d\u0e07\u0e15\u0e31\u0e27\u0e23\u0e31\u0e1a\u0e23\u0e39\u0e49 (Physics of Sensor)<\/li>\n\n\n\n<li>01420497\u00a0\u0e2a\u0e31\u0e21\u0e21\u0e19\u0e32 1 (Seminar)<\/li>\n\n\n\n<li>01420498\u00a0\u0e1b\u0e31\u0e0d\u0e2b\u0e32\u0e1e\u0e34\u0e40\u0e28\u0e29 (Special Problems)<\/li>\n\n\n\n<li>01436531 \u00a0\u0e21\u0e32\u0e15\u0e23\u0e27\u0e34\u0e17\u0e22\u0e32\u0e44\u0e1f\u0e1f\u0e49\u0e32\u0e41\u0e21\u0e48\u0e40\u0e2b\u0e25\u0e47\u0e01 (Electrical &amp; Magnetic Metrology)<\/li>\n\n\n\n<li>01436532 \u0e21\u0e32\u0e15\u0e23\u0e27\u0e34\u0e17\u0e22\u0e32\u0e44\u0e1f\u0e1f\u0e49\u0e32\u0e41\u0e21\u0e48\u0e40\u0e2b\u0e25\u0e47\u0e01\u0e20\u0e32\u0e04\u0e1b\u0e0f\u0e34\u0e1a\u0e31\u0e15\u0e34\u0e01\u0e32\u0e23 (Laboratory in Electrical &amp; magnetic Metrology)<\/li>\n<\/ul>\n\n\n\n<p><strong>\u0e23\u0e32\u0e07\u0e27\u0e31\u0e25\u0e17\u0e35\u0e48\u0e40\u0e04\u0e22\u0e44\u0e14\u0e49\u0e23\u0e31\u0e1a<\/strong><\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>2005 NRCT Award: Invention awards, \u201cTransformer cores: Novel magnetic field sensor\u201d, National Research Council of Thailand (NRCT).<\/li>\n\n\n\n<li>Best Student Paper Presentation Award for First Prize of MSAT 2004, \u201cApplications of Silicon Steel Based on Its Giant Magnetoimpedance Effect\u201d, National Metal and Materials Technology Center (MTEC).<\/li>\n<\/ul>\n\n\n\n<p><\/p>\n","protected":false},"featured_media":37159,"parent":0,"template":"","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-37158","ku-personnel","type-ku-personnel","status-publish","has-post-thumbnail","hentry"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.3 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>\u0e1c\u0e28.\u0e14\u0e23.\u0e1e\u0e07\u0e28\u0e01\u0e23 \u0e08\u0e31\u0e19\u0e17\u0e23\u0e31\u0e15\u0e19\u0e4c - \u0e20\u0e32\u0e04\u0e27\u0e34\u0e0a\u0e32\u0e1f\u0e34\u0e2a\u0e34\u0e01\u0e2a\u0e4c \u0e04\u0e13\u0e30\u0e27\u0e34\u0e17\u0e22\u0e32\u0e28\u0e32\u0e2a\u0e15\u0e23\u0e4c 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