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Titlebook: Numerical Methods for Laplace Transform Inversion; Alan M. Cohen Book 2007 Springer-Verlag US 2007 Koordinatentransformation.Laplace trans

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Alan M. Cohensitivity, with time-resolved lanthanide fluorescence providing detection down to 0.01 amol, or about 6000 molecules of target nucleic acid. With amplification, the detection limit drops to the tens or hundreds of molecules, or even the single molecule level. For many applications amplification would
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Alan M. Cohensitivity, with time-resolved lanthanide fluorescence providing detection down to 0.01 amol, or about 6000 molecules of target nucleic acid. With amplification, the detection limit drops to the tens or hundreds of molecules, or even the single molecule level. For many applications amplification would
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Alan M. Cohensitivity, with time-resolved lanthanide fluorescence providing detection down to 0.01 amol, or about 6000 molecules of target nucleic acid. With amplification, the detection limit drops to the tens or hundreds of molecules, or even the single molecule level. For many applications amplification would
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Alan M. Cohenlysis is ubiquitous in molecular biology, medical diagnostics, and forensics. Much of the readout technology is based on fluorescence detection. This volume contains contributions from many experts in the field who present an overview of many aspects of DNA technology. These chapters provide an unde
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Alan M. Coheninterest in fluorescence appears to be due to advances in time resolution, methods of data analysis, and improved instrumentation. With these advances, it is now practical to perform time-resolved measurements with enough resolution to compare the results with the structural and dynamic features of
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n fluorescence appears to be due to advances in time resolution, methods of data analysis, and improved instrumentation. With these advances, it is now practical to perform time-resolved measurements with enough resolution to compare the results with the structural and dynamic features of mac- molec
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