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  • 1
    Electronic Resource
    Electronic Resource
    s.l. : American Chemical Society
    Journal of chemical information and modeling 33 (1993), S. 609-615 
    ISSN: 1520-5142
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Surveys in geophysics 19 (1998), S. 23-72 
    ISSN: 1573-0956
    Keywords: Percolation theory ; invasion percolation ; network models ; porous media ; soil physics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences , Physics
    Notes: Abstract The application of percolation theory to porous media is closely tied to network models. A network model is a detailed model of a porous medium, generally incorporating pore-scale descriptions of the medium and the physics of pore-scale events. Network models and percolation theory are complementary: while network models have yielded insight into behavior at the pore scale, percolation theory has shed light, at the larger scale, on the nature and effects of randomness in porous media. This review discusses some basic aspects of percolation theory and its applications, and explores work that explicitly links percolation theory to porous media using network models. We then examine assumptions behind percolation theory and discuss how network models can be adapted to capture the physics of water, air and solute movement in soils. Finally, we look at some current work relating percolation theory and network models to soils.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Semigroup forum 91 (1999), S. 148-153 
    ISSN: 1432-2137
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mathematics
    Notes: Triticum sp.) field to a digital image in which the value of each pixel represents an estimated damage level. In a simple example use of the program, we show how percent canopy cover can be measured from color photographs. The programs, manual, and portion of the source code are in the public domain and are available at http://www.agron.iastate.edu/soilphysics/ewing-color.html.
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    Springer
    Analog integrated circuits and signal processing 20 (1999), S. 213-225 
    ISSN: 1573-1979
    Keywords: design ; simulation ; mixed-signal ; VHDL-AMS ; dimensional analysis ; microwave design & quantitative feedback theory
    Source: Springer Online Journal Archives 1860-2000
    Topics: Electrical Engineering, Measurement and Control Technology
    Notes: Abstract Unfortunately, the best solution for one mixed-signal design, is not the best solution for all mixed-signal designs. This is especially true in light of today’s microwave applications that span the range from low-power, low-performance type of devices, through high-power, high-frequency and high-performance applications. Digital designs are automated through the use of the VHDL hardware description language, while the mixed-signal counterparts are automated using the newly developed VHDL-AMS extension. The essential ingredients for mixed-signal design fall into the methodologies of scalable functionality, robust design and feedback techniques. Scalable functionality refers to the non-conventional methodology of dimensional analysis for establishing magnitude relationships between mixed-signal system variables. Robust design of a mixed-signal system, involves the blending of the z-domain (digital) and the s-domain (continuous), resulting in the wp-domain. Robust feedback involves the inherit feedback nature of mixed-signal systems, by providing a methodology of design that emphasizes the use of feedback for achieving the desired robust system performance tolerances despite device parameter uncertainty and noise disturbances.
    Type of Medium: Electronic Resource
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  • 5
    Electronic Resource
    Electronic Resource
    Springer
    Analog integrated circuits and signal processing 20 (1999), S. 193-201 
    ISSN: 1573-1979
    Keywords: analog CMOS ; analog arithmetic circuits ; analog adder ; analog inverter ; analog multiplier ; analog signal processing
    Source: Springer Online Journal Archives 1860-2000
    Topics: Electrical Engineering, Measurement and Control Technology
    Notes: Abstract Unique designs for CMOS analog arithmetic circuits are presented which perform addition (V1 + V2), subtraction (V2 − V1), add/invert −(V1 + V2), and multiply (V1 × V2). The circuit operation is based on the inherent square law of MOS transistor drain current when operating in the saturation region. Key features include: good linearity and accuracy, single ended voltage inputs and output, wide input and output range and no input bias voltages. The circuits can be directly coupled (no buffer) and serve as basic building blocks for analog signal processing implementations such as analog filters and adaptive equalizers. All circuits were implemented in 1.2 μm CMOS technology.
    Type of Medium: Electronic Resource
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  • 6
    Electronic Resource
    Electronic Resource
    Springer
    Analog integrated circuits and signal processing 20 (1999), S. 171-174 
    ISSN: 1573-1979
    Source: Springer Online Journal Archives 1860-2000
    Topics: Electrical Engineering, Measurement and Control Technology
    Type of Medium: Electronic Resource
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  • 7
    Electronic Resource
    Electronic Resource
    Springer
    The journal of VLSI signal processing systems for signal, image, and video technology 22 (1999), S. 83-85 
    ISSN: 1573-109X
    Source: Springer Online Journal Archives 1860-2000
    Topics: Electrical Engineering, Measurement and Control Technology
    Type of Medium: Electronic Resource
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  • 8
    Electronic Resource
    Electronic Resource
    Springer
    The journal of VLSI signal processing systems for signal, image, and video technology 22 (1999), S. 103-111 
    ISSN: 1573-109X
    Source: Springer Online Journal Archives 1860-2000
    Topics: Electrical Engineering, Measurement and Control Technology
    Notes: Abstract Unique designs for CMOS analog arithmetic circuits are presented which perform addition (V1 + V2), subtraction (V2 − V1), add/invert −(V1 + V2), and multiply (V1 × V2). The circuit operation is based on the inherent square law of MOS transistor drain current when operating in the saturation region. Key features include: good linearity and accuracy, single ended voltage inputs and output, wide input and output range and no input bias voltages. The circuits can be directly coupled (no buffer) and serve as basic building blocks for analog signal processing implementations such as analog filters and adaptive equalizers. All circuits were implemented in 1.2 μm CMOS technology.
    Type of Medium: Electronic Resource
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  • 9
    Electronic Resource
    Electronic Resource
    Springer
    The journal of VLSI signal processing systems for signal, image, and video technology 22 (1999), S. 123-134 
    ISSN: 1573-109X
    Source: Springer Online Journal Archives 1860-2000
    Topics: Electrical Engineering, Measurement and Control Technology
    Notes: Abstract Unfortunately, the best solution for one mixed-signal design, is not the best solution for all mixed-signal designs. This is especially true in light of today's microwave applications that span the range from low-power, low-performance type of devices, through high-power, high-frequency and high-performance applications. Digital designs are automated through the use of the VHDL hardware description language, while the mixed-signal counterparts are automated using the newly developed VHDL-AMS extension. The essential ingredients for mixed-signal design fall into the methodologies of scalable functionality, robust design and feedback techniques. Scalable functionality refers to the non-conventional methodology of dimensional analysis for establishing magnitude relationships between mixed-signal system variables. Robust design of a mixed-signal system, involves the blending of the z-domain (digital) and the s-domain (continuous), resulting in the wp-domain. Robust feedback involves the inherit feedback nature of mixed-signal systems, by providing a methodology of design that emphasizes the use of feedback for achieving the desired robust system performance tolerances despite device parameter uncertainty and noise disturbances.
    Type of Medium: Electronic Resource
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  • 10
    Publication Date: 1999-01-01
    Print ISSN: 0002-1962
    Electronic ISSN: 1435-0645
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Published by Wiley
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