Chemical Instrumentation: A Systematic ApproachAddison-Wesley Publishing Company, 1973 - 903 pagine |
Dall'interno del libro
Risultati 1-3 di 89
Pagina 280
... optical aberrations may be corrected simultaneously . When one understands the requirements of any particular optical system , one can decide ... optical dispersion , does the rate of change 280 Aspects of physical and geometrical optics.
... optical aberrations may be corrected simultaneously . When one understands the requirements of any particular optical system , one can decide ... optical dispersion , does the rate of change 280 Aspects of physical and geometrical optics.
Pagina 316
... Optics : A Guide to Optical Design . Vol . 1. New York : Wiley , 1968 4. Warren J. Smith , Modern Optical Engineering , the Design of Optical Systems . New York : McGraw - Hill , 1966 Particular optical modules or types of components ...
... Optics : A Guide to Optical Design . Vol . 1. New York : Wiley , 1968 4. Warren J. Smith , Modern Optical Engineering , the Design of Optical Systems . New York : McGraw - Hill , 1966 Particular optical modules or types of components ...
Pagina 610
... optical rotation of a sample at a given wavelength is often a valuable means of identification after the possibilities have been narrowed by use of other data . For a wide variety of complex molecules such as steroids and proteins the ...
... optical rotation of a sample at a given wavelength is often a valuable means of identification after the possibilities have been narrowed by use of other data . For a wide variety of complex molecules such as steroids and proteins the ...
Sommario
Measurement and Instrumentation | 1 |
Basic Electrical Variables | 25 |
9 | 47 |
Copyright | |
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absorbance absorption amplitude analysis analyzer angle anode applied atoms beam Beer's law capacitance capacitor cathode cell circuit of Fig components concentration constant coulometry curve detection detector determined device diagram differential diode dispersion drop electrical electrode electrolysis emission emitter energy equation example excited feedback filter flame fluorescence frequency grating impedance incident input instrument intensity ionization ions magnetic measurement mercury meter method module molecular molecules monochromator noise obtained Ohm's law operational amplifier optical output voltage oxidation p-n junction peak phase photometer photomultiplier polarized polarography potential potentiometer precision prism proton pulse R₁ R₂ radiation range ratio RC circuit readout redox reduced refractive index resistance resistor resonance result sample scan schematic Section sensitivity shown in Fig signal slit solution species spectral spectrometer spectrophotometer Spectroscopy spectrum substance techniques temperature Thévenin equivalent titration transistor tube V₁ vibrational wave wavelength Wheatstone bridge width ΚΩ