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1 dyl nitrogen atoms define a perfectly planar rectangle.
2  being an upper bound on the dimensions of a rectangle.
3 d unique objects placed at the vertices of a rectangle.
4  Waals contact across the "long" side of the rectangle.
5 Asp539 residues occupying the corners of the rectangle.
6 ths of the dusk disk associated with the Red Rectangle.
7 on, n(s2) best captures the behaviour of DNA rectangles.
8 migration alternates between 1D lines and 2D rectangles.
9                 Test figures were fragmented rectangles.
10 creen that was cued while ignoring all green rectangles.
11  Participants observed two briefly presented rectangles.
12 es led to the formation of neutral molecular rectangles.
13 ixtures, leads to the formation of molecular rectangles (5-8) in 92-97% isolated yields via spontaneo
14 mbly of five new supramolecular complexes (a rectangle, a triangle, a hexagon, and two squares) are d
15 onds of eye patching, participants perceived rectangles adjacent to the BS to be elongated toward the
16 perform visual search for a uniquely colored rectangle and shift gaze either toward or opposite this
17 ll with cross sections of the supramolecular rectangle and triangle species on the basis of X-ray bon
18  (20%) had crystals consisting of plate-like rectangles and fan-shaped or starburst forms.
19 ck copolymers, including squares, rhombuses, rectangles and triangles.
20 on clusters, including carbon dimers, carbon rectangles, and 'zigzag' and 'armchair'-like carbon chai
21 ambers of defined geometry (e.g., triangles, rectangles, and ellipses).
22           Participants reported either which rectangle appeared first (TOJ) or which rectangle had a
23                       The dimensions of this rectangle are approximately 18 x 8 x 9 x 17 A, and the t
24                           The singly reduced rectangles are members of an unusual category of mixed-v
25                                    Thus, the rectangles are unusual examples of class III (fully vale
26 a gray line was briefly superimposed on each rectangle at onset.
27 be molecules, rates of transport through the rectangle-based material have been extracted from electr
28 thin the square-based materials, but not the rectangle-based material, align to form simple one-dimen
29 ing images of objects, buildings, and planar rectangles both with and without a background that indic
30  Here we show that a two-dimensional origami rectangle can be effectively folded into a short, cylind
31 presented in the lower LVF is perceived as a rectangle extending upward.
32 allographic studies of the six show that the rectangle frameworks, as defined by the metal atoms, ran
33 hich rectangle appeared first (TOJ) or which rectangle had a slightly wider gray line (shape).
34 ies of six neutral, tetrametallic, molecular rectangles has been synthesized that have the form ([Re(
35 mbled supramolecular polygons (triangles and rectangles) has been achieved using stable (1)H/(2)D iso
36 d hydrophobic and hydrophilic supramolecular rectangles have been fully characterized by multinuclear
37 sed of discrete, cavity-containing molecular rectangles have been prepared.
38                                    Molecular rectangles having the form ([Re(CO)3]2(X)2)(2)-mu,mu'-(L
39 et contact area shapes ranging from squares, rectangles, hexagons, octagons, to dodecagons via the de
40 , we report the self-assembly of DNA origami rectangles into two-dimensional lattices based on stepwi
41 ion-driven self-assembly into supramolecular rectangles is reported.
42      For both illusory and luminance-defined rectangles, key region noise biased a fat response to th
43 ken in sublayers, forming a random tiling of rectangles, large triangles and small triangles with 6-f
44  expelled the gas and dust that make the Red Rectangle nebula), possess gravitationally bound orbitin
45                  The task consisted of seven rectangles of graded widths presented on a screen; only
46 ntration programming model, to self assemble rectangles (of fixed aspect ratio) with high probability
47 nted perpendicular to the movement path, and rectangles oriented parallel to the movement path.
48 andomly from trial to trial-between squares, rectangles oriented perpendicular to the movement path,
49 amics of DNA origami dimerization using flat rectangle origami components and different architectures
50 ld modeling suggests that the functionalized rectangles range in size from roughly 3.0 x 2.9 to 3.0 x
51                           The singly reduced rectangles represent an unusual type of mixed-valence co
52 easurements for mixed-valence forms of these rectangles reveal intense, asymmetric absorption bands i
53                                  A mid-sized rectangle served as a conditioned stimulus (CS; 50% elec
54 ponded significantly more to the small/close rectangles than to the large/far ones, in spite of the f
55  Our main design feature is a self-assembled rectangle that serves as a molecular canvas, with each o
56 ers discriminate fat and thin noise-embedded rectangles that were defined by either illusory or lumin
57 arge/far ones, in spite of the fact that the rectangles themselves were identical.
58 tructures with predetermined shapes (square, rectangle, triangle and ribbon) and controlled dimension
59 ectrometry data confirm the existence of the rectangle, triangle, and hexagon, and NMR data are consi
60 rporation into a supramolecular rhomboid and rectangle via platinum-mediated self-assembly is reporte
61 cular architectures: a Fe(II) 4 L6 molecular rectangle was isolated following reaction of the ligand
62 each trial, the participant judged whether a rectangle was shifted to the right or left and responded
63 e other, they were requested to report which rectangle was squarer.
64  n(s2) between 0.04 and 0.1, over 90% of DNA rectangles were incorporated into lattices and that, com
65                   Interestingly, when simple rectangles were presented in a control condition against
66 ike scattering was modeled by an anisometric rectangle with a thickness comparable to a singe beta-ch
67           First we show how to self assemble rectangles with a fixed aspect ratio (alpha:beta), with
68 adium complexes readily form large molecular rectangles with a linear linker such as 4,4'-dipyridyl.
69 e differentiation signals, cells cultured in rectangles with increasing aspect ratio and in shapes wi
70 nerate physiological shapes (2,000-microm(2) rectangles with length:width aspect ratios of 5:1-7:1) a
71 task consisting of pseudo-randomly presented rectangles with systematically varying widths.
72 lus (CS; 50% electric shock probability) and rectangles with widths of CS +/-20%, +/-40%, and +/-60%
73 red them to remember the orientations of red rectangles within the half of the screen that was cued w

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