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High pass filters

Detail-Filtered One-Level Decomposition The detail-filtered (high-pass) coefficients of the first resolution level represent a new type of descriptor that reveals special aspects of data, like trends, breakdown points, and discontinuities in higher derivatives. It is useful as alternative molecular representation for neural networks in classification and prediction tasks (Figure 5.20). [Pg.148]

Detail-filtered (high-pass) wavelet coefficients D(l) of die first resolution level. [Pg.161]

These are, in alphabetical order, ash-free filters, bandpass filters, black band filters, blue band filters, broadband filters, cigarette filter, fluted filters, high-pass filters, low-pass filters, qualitative filters, and quantitative filters. The filter is catholic. In German, in chemistry the filter has neutral gender. In communication theory, the filter has male gender, however. [Pg.524]

The most important feature of the pressure filters which use hydrauHc pressure to drive the process is that they can generate a pressure drop across the medium of more than 1 x 10 Pa which is the theoretical limit of vacuum filters. While the use of a high pressure drop is often advantageous, lea ding to higher outputs, drier cakes, or greater clarity of the overflow, this is not necessarily the case. Eor compressible cakes, an increase in pressure drop leads to a decrease in permeabiUty of the cake and hence to a lower filtration rate relative to a given pressure drop. [Pg.393]

For the preparation of gaseous S2O a vacuum hne is needed which should be well dried by pumping and baking. The partial pressure of S2O has to be kept well below 1 mbar (100 Pa). If only small amounts of S2O are needed a mixture of 2 g CuO and 10 g elemental sulfur is heated in a high vacuum to 250-400 °C. The hberated gas is passed through a glass wool filter to remove SO3 and sulfur vapor it then contains up to 40% S2O besides SO2 [9] ... [Pg.205]

Neder H, Heusser G, Laubenstein M (2000) Low-level y-ray germanium-spectrometer to measure veiy low primordial radionuclide concentrations. ApplRadiat Isot 53 191-195 Palacz ZA, Freedman PA, Walder AJ (1992) Thorium isotope ratio measurements at high abundance sensitivity using a VG 54-30, an energy-filtered thermal ionization mass spectrometer. Chem Geol 101 157-165... [Pg.58]

A catalyst, prepared from isoprenylaluminum and titanium tetrachloride has been used to prepare polymers with a highly irregular shape (5). The polymerization is performed at 70-80°C with an ethylene partial pressure of 0.16-0.27 M Pa. A bulk density of 0.16-0.23 gem-3 is obtained. Such materials are intended to be used as filter elements. [Pg.77]

Figure 9.11-2 Simplified scheme of the high pressure lines for a dry-cleaning CO2 unit. Legend washing chamber, C compressor, CV evaporator or still, ET button filter, FB lint-trap, FT heat-exchanger, HE operative tank, OT additive pump, PA liquid pump, PL vacuum pump, PV storage tank, ST. Figure 9.11-2 Simplified scheme of the high pressure lines for a dry-cleaning CO2 unit. Legend washing chamber, C compressor, CV evaporator or still, ET button filter, FB lint-trap, FT heat-exchanger, HE operative tank, OT additive pump, PA liquid pump, PL vacuum pump, PV storage tank, ST.
Figure 1. Schematic of the apparatus. AC-absorption cell, BPF-bandpass filter, CdL-cadmium lamp, CM-capacitaiice manometer, D-frequency doubler, DG-three channel delay generator, DC-dye laser, EM-emergy monitor, Gl-gas inlet, HS-harmonic separator, HV-high voltage, PA-picoammeter, PD-photodiode, PM-photomultiplier, PL-photolysis laser, RC-reaction cell, SA-signal averager, T-chrottle, YL-Nd YAG laser, 7-54F-Corning 7-54 glass filter. Figure 1. Schematic of the apparatus. AC-absorption cell, BPF-bandpass filter, CdL-cadmium lamp, CM-capacitaiice manometer, D-frequency doubler, DG-three channel delay generator, DC-dye laser, EM-emergy monitor, Gl-gas inlet, HS-harmonic separator, HV-high voltage, PA-picoammeter, PD-photodiode, PM-photomultiplier, PL-photolysis laser, RC-reaction cell, SA-signal averager, T-chrottle, YL-Nd YAG laser, 7-54F-Corning 7-54 glass filter.
Field tests, on a single filter element of commercial design, have been successfully conducted at typical operating condition. Measured Ciltratioo efficiency is con iarable with bag house filters, for filtration velocities up to 14 cm/s. The applied filtration velocities are extremely high compared with bag filters which normally operates in the area of 1.0 to 2.5 cm s. The pressure drop over the sand fitter shows that even if filtration speed is increased dramatically, it is possible to work within the same field as bag filters, i.e. from 900 to approximately 2200 Pa. [Pg.740]

The main features of purification filters based on ion exdiange fibrous materials are high sorption capacity and purification degree, low aerodynamic resistance, and efficient regeneration. As studies have shown [4 ], at a gas,flow rate of 0.1 m/s in a dense layer of a non-woven material, the length of a working layer is 2 mm which makes it possible to use filtering cloths of 10—20 mm thickness. The area of the filter is 20 m per 1 m of operation volume which corresponds to specific output, 7 10 m /h of purified air. The aerodynamic resistance of filters in this case does not exceed 20 Pa. [Pg.371]

In the presence of PA-Sc-TAD (3), quinoline synthesis based on a three-component coupling reaction [8b,c] was performed. An aldehyde, an aromatic amine, and an alkene were mixed in CH2Cl2/CH3CN (2 1) at 60 °C for 12 h. Hexane was then added and the catalyst was filtered off. The filtrate was concentrated in vacuo to afford a crude adduct. After purification by column chromatography, the desired quinoline derivative was obtained in a high yield. [Pg.232]

Riciputi LR (1996) A comparison of extreme energy filtering and high mass resolution techniques for the measurement of " S/ S ratios by ion microprobe. Rapid CommunMass Spec 10 282-286 Rona PA, Scott SD (1993) A special issue on sea-floor hydrothemal mineralization new perspectives. EconGeol 88 1935-1976... [Pg.523]

Hamer T, Bidleman TF (1996) Measurements of octanol-air partition coefficients for polychlorinated biphenyls. J Chem Eng Data 41 895-899 Hamer T, Bidleman TF (1998) Octanol-air partition coefficient for describing particle/gas partitioning of aromatic compounds in urban air. Environ Sci Technol 32 1494—1502 Hart KM, Pankow JF (1994) High-volume air sampler for particle and gas sampling 2. Use of backup filters to correct for the adsorption of gas-phase polycyclic aromatic hydrocarbons to the front filter. Environ Sci Technol 28 655-661 Helm PA, Bidleman TF (2005) Gas-particle partitioning of polychlorinated naphthalenes and non- and mono-orgho-substituted polychlorinated biphenyls in arctic air. Sci Total Environ 342 161-173... [Pg.304]


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See also in sourсe #XX -- [ Pg.198 ]




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Filtering high-pass

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Fourth-Order Butterworth High Pass Filter

Frequency high-pass filter

High mass pass filter

High-pass filter coefficients

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