by
İyikanat, Fadıl.
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(N − 1) μB, whereas they reduce to (N − 1) μB for full saturation of edges with Hydrogen, Lithium
by
Demirkaya, Emre, author.
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seems to be promising to easily replace the lithium-ion batteries for portable electronic systems
by
Gülen, Sena, author.
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Lithium ion batteries.
by
Ulusoy, Seda, author.
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Lithium ion batteries.
by
Tekneci, Gülsüm Efsun, author.
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importance. In addition to battery technologies consisting of lithium and post-lithium ion, zinc-air
by
Yıldırımkaraman, Öykü, author.
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. Additionally, polyester-based gels lithium-ion conductivity was investigated. Dissociation of lithium
by
Nampeera, Jackline, author.
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Functionalized cellulose based adsorbent for lithium recovery from aqueous solutions/ Nampeera
by
Kaya, Ezgi, author.
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metals are used in lithium-ion battery technologies especially electrical vehicles. A preliminary stage
by
Tekin, Onur, author.
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Lithium ion batteries.
by
Karakaya, Merve, author.
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capacitive energy storage. In the second chapter, the effects of bismuth lithium titanate incorporation into
by
Şahin, Resul Çağtay, author.
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Numerical investigation of various heat transfer mechanisms on thermal management of a lithium-ion
by
Gediksiz, Çağlar, author.
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Alıntı:
Lithium ion batteries -- Materials -- Thermal properties
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