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Developments in Ceramic Materials Research

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microstructure(s), x, xi, 73, 74, 211, 215, 238, 241,<br />

257<br />

microwave, 99<br />

migration, 4, 5, 68, 82, 83, 87, 88, 89, 90, 94<br />

m<strong>in</strong>erals, 7, 8, 10, 16, 18, 20<br />

M<strong>in</strong>istry of Education, 277<br />

Missouri, 31<br />

mix<strong>in</strong>g, 213, 214<br />

model<strong>in</strong>g, x, 173, 174, 175, 211<br />

models, x, 8, 37, 130, 173, 174, 175, 188, 189, 192,<br />

205, 206, 208, 213, 217, 223<br />

modulus, 64, 178, 218, 228, 237<br />

moisture, viii, 54, 247<br />

molecules, 247, 257<br />

molybdenum, 57, 98, 103, 109, 113, 114, 120, 129,<br />

130, 133, 134, 137, 138, 243, 244, 247, 248, 249,<br />

250, 251, 257<br />

morphology, 192, 195, 215, 265, 268, 278<br />

Moscow, viii, 53, 58, 91, 93<br />

mould<strong>in</strong>g, 176<br />

multiplication, 175, 205, 206<br />

multivariate, 13<br />

music, 145, 156, 171<br />

musicians, 171<br />

Na + , 272<br />

NaCl, xi, 261, 263, 264<br />

nanocomposites, 91<br />

nanocrystals, 278<br />

nanoparticles, 54, 92<br />

nanotechnology, viii, 54<br />

nanotube(s), 242, 244, 245, 259<br />

National Science Foundation, 29<br />

Nd, 11, 19, 73, 75, 83, 87, 89, 90, 91, 92, 95<br />

neodymium, 11, 90, 93, 94, 95<br />

Netherlands, 30, 139<br />

network, 100, 113, 118, 262<br />

New Mexico, 29, 33, 34<br />

New Orleans, 31<br />

New York, iii, iv, 30, 32, 34, 52, 91, 93, 94, 139,<br />

208, 240<br />

next generation, 259<br />

nickel, 11, 73<br />

NIR, 67, 265<br />

nitrates, 61<br />

nitrides, vii, 175, 176<br />

nitrogen, 64, 80, 99, 137, 247, 248, 251<br />

nodes, 170, 200, 225<br />

noise, 163, 170, 172, 218, 232<br />

North America, 51, 52<br />

nucleation, 263, 267<br />

N<br />

Index 287<br />

nuclei, 104<br />

O<br />

observations, 182, 185, 273<br />

Oklahoma, 31, 32, 33<br />

omission, 29<br />

optical fiber, 66<br />

optical micrographs, 185<br />

optical microscopy, 183<br />

optical parameters, 92<br />

optical properties, xi, 66, 72, 76, 92, 261, 278<br />

optimization, 212, 279<br />

orbit, 107, 115, 251<br />

organizations, x, 173<br />

orientation, 56, 130, 136, 195, 198, 202, 208<br />

oscillation, 91<br />

outliers, 23<br />

oxidation, ix, 97, 98, 99, 100, 246, 277, 279<br />

oxides, vii, ix, 72, 97, 175, 176, 274<br />

oxygen, 72, 101, 107, 133, 245<br />

oxysulfide, ix, 54, 55, 72, 73, 75, 76, 77, 78, 84, 87,<br />

90, 93, 94<br />

P<br />

Pacific, 31<br />

packag<strong>in</strong>g, xi, 241, 259<br />

pa<strong>in</strong>ts, 10, 11, 12, 25<br />

parallel process<strong>in</strong>g, 206, 207<br />

parallelization, 206<br />

parameter, ix, x, 64, 85, 87, 97, 98, 100, 103, 107,<br />

113, 118, 138, 141, 155, 175, 189, 195, 265, 276<br />

Paris, 139, 171, 278<br />

particle morphology, 265<br />

particles, 51, 57, 62, 247, 257, 268<br />

passive, 56, 212, 216, 231<br />

pathways, 113, 133, 134, 135, 136, 137<br />

pattern recognition, 12<br />

pattern<strong>in</strong>g, 247, 248, 251<br />

PCA, 12<br />

peat, 151<br />

perceptions, 2<br />

perforation, 149<br />

performance, x, 50, 92, 98, 151, 170, 175, 206, 211,<br />

213, 233, 239, 244, 246, 247, 256, 258, 259<br />

periodicity, 186, 194<br />

permittivity, 215, 216, 218, 219, 222, 231, 232<br />

personal, 253<br />

Peru, 34<br />

phase transformation, 266<br />

phase transitions, 55

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