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Rectangular

An s orbital is spherically symmetrical and can contain a maximum of two electrons with opposed spins. A p orbital has a solid figure-of-eight shape there are three equivalent p orbitals for each principal quantum number they correspond to the three axes of rectangular coordinates. [Pg.152]

There are two types of nodes in the decision tree decision nodes (rectangular) and chance nodes (circular). Decision nodes branch into a set of possible actions, while chance nodes branch into all possible results or situations. [Pg.179]

The following decision tree shows a logical sequence of decisions (shown in the rectangular boxes) and chance outcomes (chance events are represented by circles). At each decision point, petroleum economics is applied to determine the choice, with the criterion being to achieve a positive EMV. [Pg.329]

The measurements were earned out on rectangular slots in aluminium and mild steel inspected using two probes at several frequeneies. The size of the eoils are adapted to the dimensions of the slots which simulate rectangular defects. [Pg.142]

The effect of a long axial rectangular emerging defect of width e and of depth h is to increase the section Sa between the solenoid and the tube value of AS = eh. The induction in the space between the solenoid and the external surface of the tube and inside of tube remains unchanged. [Pg.353]

If we suppose that the presence of a long axial emerging rectangular defect doesn t change the thickness e of the ring where the induction in the tube is not equal to zero but only its circumferential length, and also that it is it does not change the local induction in amplitude and phase, then the presence of the defect increases only the of the piece where the induction is not equal to zero, this increment is equal to 2he. [Pg.353]

It is possible to determine with precision the surface area of long axial emerging rectangular. [Pg.356]

Since the surface area and the depth of these rectangular defects can be determined. there width can also determined. [Pg.356]

Fig. 1 Electropotential transformer on the area containing a rectangular crack. Fig. 1 Electropotential transformer on the area containing a rectangular crack.
Let us consider a diffuser G Figure la) which is illuminated with an He-Ne laser. The illuminated area is limited with a rectangular aperture A. The observation plane IToiTl, ), parallel to the reference plane n(x,y), is located at a distance D from it. [Pg.657]

For applications on indications it is assumed that the visibility level VL of rectangular objects (indications) is the same as for circles with the same area. The lenght 1 and width w of indications are correlated in very different manners, mainly dependant on the geometrie of the inhomogenity (crack). From some observations, the following correlation between w and 1 was introduced w (mm) = 0.05 + 0.03 1 (e g. 1=1.5 mm, w a 0.1 mm). For the same areas, the length 1 of the indication can be introduced in Fig. 1 as a second scale. [Pg.670]

For special applications such as air coupled testing a special programmable transmitter board was developed. This transmitter generates rectangular and burst signals, which increase the acoustical power in an optimized frequency range, and provides a superior signal-to-noise ratio. [Pg.861]

S. Chains in the S phase are also oriented normal to the surface, yet the unit cell is rectangular possibly because of restricted rotation. This structure is characterized as the smectic E or herringbone phase. Schofield and Rice [204] applied a lattice density functional theory to describe the second-order rotator (LS)-heiTingbone (S) phase transition. [Pg.134]

For interactions between two quadmpolar molecules which have 0 and 0g of the opposite sign, at a fixed separation r, the angular factor in equation (A1.5.13t leads to a linear stmcture, 0 = 0g = 0, being the most attractive. Linear molecules may also prefer a 2 rectangular or non-planar cross arrangement with 0 = 0g = nil, which allows them to approach closer and increase the radial factor. [Pg.190]

A sine-shape has side lobes which impair the excitation of a distinct slice. Other pulse envelopes are therefore more commonly used. Ideally, one would like a rectangular excitation profile which results from a sine-shaped pulse with an infinite number of side lobes. In practice, a finite pulse duration is required and therefore the pulse has to be truncated, which causes oscillations in the excitation profile. Another frequently used pulse envelope is a Gaussian frmction ... [Pg.1523]

Figure BT2T4 illustrates the direct-space and reciprocal-space lattices for the five two-dimensional Bravais lattices allowed at surfaces. It is usefiil to realize that the vector a is always perpendicular to the vector b and that is always perpendicular to a. It is also usefiil to notice that the length of a is inversely proportional to the length of a, and likewise for b and b. Thus, a large unit cell in direct space gives a small unit cell in reciprocal space, and a wide rectangular unit cell in direct space produces a tall rectangular unit cell in reciprocal space. Also, the hexagonal direct-space lattice gives rise to another hexagonal lattice in reciprocal space, but rotated by 90° with respect to the direct-space lattice. Figure BT2T4 illustrates the direct-space and reciprocal-space lattices for the five two-dimensional Bravais lattices allowed at surfaces. It is usefiil to realize that the vector a is always perpendicular to the vector b and that is always perpendicular to a. It is also usefiil to notice that the length of a is inversely proportional to the length of a, and likewise for b and b. Thus, a large unit cell in direct space gives a small unit cell in reciprocal space, and a wide rectangular unit cell in direct space produces a tall rectangular unit cell in reciprocal space. Also, the hexagonal direct-space lattice gives rise to another hexagonal lattice in reciprocal space, but rotated by 90° with respect to the direct-space lattice.
The solution flow is nomially maintained under laminar conditions and the velocity profile across the chaimel is therefore parabolic with a maximum velocity occurring at the chaimel centre. Thanks to the well defined hydrodynamic flow regime and to the accurately detemiinable dimensions of the cell, the system lends itself well to theoretical modelling. The convective-diffiision equation for mass transport within the rectangular duct may be described by... [Pg.1937]

It is, however, important to note tliat individual columns are one-dimensional stacks of molecules and long-range positional order is not possible in a one-dimensional system, due to tlieniial fluctuations and, therefore, a sliarji distinction between colj. and colj. g is not possible [20]. Phases where tlie columns have a rectangular (col. ) or oblique packing (col j of columns witli a disordered stacking of mesogens have also been observed [9, 20, 25,... [Pg.2549]

Figure C2.2.7. Schematic illustrating tire classification and nomenclature of discotic liquid crystal phases. For tire columnar phases, tire subscripts are usually used in combination witli each otlier. For example, denotes a rectangular lattice of columns in which tire molecules are stacked in a disordered manner (after [33])... Figure C2.2.7. Schematic illustrating tire classification and nomenclature of discotic liquid crystal phases. For tire columnar phases, tire subscripts are usually used in combination witli each otlier. For example, denotes a rectangular lattice of columns in which tire molecules are stacked in a disordered manner (after [33])...
In this expression, and are both 6x3 rectangular matrices whose... [Pg.198]


See other pages where Rectangular is mentioned: [Pg.405]    [Pg.121]    [Pg.142]    [Pg.143]    [Pg.144]    [Pg.144]    [Pg.161]    [Pg.719]    [Pg.770]    [Pg.842]    [Pg.857]    [Pg.858]    [Pg.521]    [Pg.559]    [Pg.1428]    [Pg.1458]    [Pg.1508]    [Pg.1523]    [Pg.1560]    [Pg.1658]    [Pg.1659]    [Pg.1767]    [Pg.1767]    [Pg.1937]    [Pg.2078]    [Pg.2614]    [Pg.2624]    [Pg.2802]    [Pg.2966]    [Pg.403]   
See also in sourсe #XX -- [ Pg.187 , Pg.189 , Pg.194 , Pg.194 ]

See also in sourсe #XX -- [ Pg.132 , Pg.164 ]

See also in sourсe #XX -- [ Pg.28 ]




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A Rectangular Beam in Bending

Adsorption rectangular

Aluminium rectangular sections

Aspect ratio rectangular ducts

Axis Rectangular

Batteries flat rectangular

Batteries rectangular

Batteries slim rectangular

Beam profile rectangular

Beams rectangular section

Boxing up rectangular prisms

Busbars rectangular

Cartesian coordinate Rectangular

Catalytic Pellets with Rectangular Symmetry

Cavities rectangular

Centered rectangular mesophase

Chambers rectangular

Channel rectangular

Channel rectangular channels

Characterization of a rectangular single-cell cross-section

Circles rectangular

Circulatory Flow in a Rectangular Domain

Clarifiers rectangular

Cluster rectangular

Columnar rectangular

Columnar rectangular mesophase

Complex number rectangular coordinates

Concentration rectangular

Constitutive properties of rectangular single-cell cross-section

Conventional rectangular plate

Coordinates, Janecke rectangular

Cyclobutadiene rectangular

DIFFUSION IN A RECTANGULAR ELEMENT

Diffusion rectangular channel

Diffusion through Isotropic Rectangular Parallelepipeds

Distribution rectangular

Duty cycle rectangular waveform

Electrolysis rectangular cell

Electron in a Potential Rectangular Box k-Space

Equilibrium isotherms rectangular

Extrusion rectangular channel

Flow in Rectangular Channels

Flow in Rectangular Geometries

Flow rectangular channel

Flow rectangular ducts

Heat Transfer in Rectangular Channels

Heat Transfer in Rectangular, Trapezoidal and Triangular Ducts

Heat conduction equation rectangular coordinates

Heat conduction in a rectangular slab

Heat rectangular channel

In a rectangular slab

Instrument profile rectangular

Isometric sketching rectangular solids

Laminar duct flow rectangular

Lattice rectangular

Matrix rectangular

Mixer rectangular

Multi rectangular

Non-rectangular sections

Notched rectangular specimen

Oblique rectangular, centered

Parallelogram rectangular

Particle in a rectangular well

Plate rectangular, conduction

Probability distribution rectangular

Procedure 9-3 Design of Square and Rectangular Platforms

Protein Rectangular phase

Protomodels rectangular potential well protomodel

Quantitative Formation of Catenanes from Rectangular Molecular Boxes

RECTANGULAR SURFACE

RECTANGULAR TRIMMED SURFACE

RECTANGULAR-COMPOSITE-SURFACE

Reaction pathway rectangular

Rectangular Cross-section

Rectangular Diagrams

Rectangular Plates

Rectangular Sedimentation Tanks

Rectangular and Skewed Coordinates

Rectangular and Square Planar

Rectangular averaging

Rectangular band model

Rectangular band model electronic energy

Rectangular barrier

Rectangular beams

Rectangular block

Rectangular bubble column

Rectangular burner

Rectangular cell model

Rectangular channel Subject

Rectangular channels/tubes

Rectangular co-ordinates

Rectangular columnar discotics

Rectangular columnar phase

Rectangular concentration dispersion

Rectangular coordinate system

Rectangular coordinate system, internal

Rectangular coordinates

Rectangular cross-flow module

Rectangular d band model

Rectangular d band model of cohesion

Rectangular density-of-states

Rectangular ducts

Rectangular ducts velocity profile

Rectangular electrodes

Rectangular electrophoresis chambers

Rectangular enclosure

Rectangular enclosures horizontal

Rectangular enclosures inclined

Rectangular enclosures vertical

Rectangular excitation profile

Rectangular flat plates

Rectangular function

Rectangular function Fourier transform

Rectangular gel

Rectangular geometry

Rectangular glass tanks

Rectangular grid networks

Rectangular grids

Rectangular hearths

Rectangular hyperbola

Rectangular hyperbolic

Rectangular hyperbolic function

Rectangular hypothesis

Rectangular isotherm

Rectangular jets

Rectangular lattice parameter

Rectangular lineshape

Rectangular loop extractors

Rectangular mesh

Rectangular mirror

Rectangular notch

Rectangular parallelepipeds

Rectangular phases

Rectangular platforms

Rectangular plot

Rectangular point lattice, planes

Rectangular potential well protomodel

Rectangular pulse

Rectangular pulse technique

Rectangular rule

Rectangular section

Rectangular slab

Rectangular solids, isometric

Rectangular symmetry, effectiveness factors

Rectangular valves

Rectangular vessels

Rectangular voltage

Rectangular wave voltage, periodic

Rectangular weir equation

Rectangular well model

Rectangular, model

Rectangular, primitive

Selective excitation using rectangular pulses

Selective rectangular pulse

Single-Stage Adsorption The Rectangular Operating Diagram

Square and Rectangular Sections

Square and Rectangular UMEs

Square wave rectangular

Standard Rectangular Waveguides

Subject rectangular

Tapered Rectangular Aperture

The Rectangular Wave

The rectangular d band model of cohesion

Triangular and Rectangular Channels

Tube of Rectangular Cross-Section

Types of Circular and Rectangular Flat Plates

Unit cell centered rectangular

Valve unit rectangular

Wave rectangular

Weight function rectangular

Weirs rectangular

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