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Cutting circles

Cut circles of silicone rubber to fit inside the lids, and punch out four holes of 7.8-mm diameter to marry up with those in the lid (see Note 10). [Pg.42]

Large circle with lines cutting circle (page 367)... [Pg.327]

In Eq. (146), tab is the subsum consisting of those graphs which contain one or more cutting circles, and Sab is the remainder. From the discussion above, it is also clear that tab is given by... [Pg.125]

Programmed circle diameter 100 mm Measured cut circle diameter 97.70 mm Kerf width 0.30 mm... [Pg.524]

With the homemade edger, you can accurately cut circles in lumber of any thickness. The only limitation is the size of your sawbar, A new (or near-new) crosscut chain works best for cutting circles of small diameter. Don t use old chain—the set of a chain recedes with wear, which results in less clearance for the bar in the cut. [Pg.186]

Plane angle radian rad The plane angle between two radii of a circle which cut off on the circumference an arc equal in length to the radius. [Pg.77]

FIG. 6 Configuration snapshot of a spontaneously formed vesicle from doubletailed amphiphiles in the Larson model (a) entire vesicle (b) vesicle cut in half in order to show its inner side. Black circles represent head particles (+1), gray circles tail particles (—1), white circles the neutral connecting particles (0). (From Bernardes [126].)... [Pg.645]

Figure 1.7 The cylindrical symmetry of the H-H ct bond in an H2 molecule. The intersection of a plane cutting through the (T bond is a circle. Figure 1.7 The cylindrical symmetry of the H-H ct bond in an H2 molecule. The intersection of a plane cutting through the (T bond is a circle.
We know from Section 1.5 that cr bonds are cylindrically symmetrical. In other words, the intersection of a plane cutting through a carbon-carbon singlebond orbital looks like a circle. Because of this cjdindrical symmetry rotation is possible around carbon-carbon bonds in open-chain molecules. In ethane, for instance, rotation around the C-C bond occurs freely, constantly changing the spatial relationships between the hydrogens on one carbon and those on the other (Figure 3.5),... [Pg.93]

For holes in thin sections, circle cutters, or drills which only cut the circumference and eject a round thin plug of material, will often be preferred for production. [Pg.536]

Curve C of Fig. 6-15(a) corresponds to /a 0.1, and curve C of Fig. 6-15(b) to p = 10. It is observed that in the first case the curve O is almost a circle (as in a harmonic oscillator) while in the second case it has very special features. In fact from very high velocity (y — sc), the solution drops very rapidly to zero (at the point where it cuts the x-axis). At this point the relaxation interval begins, the representative point moving near the x-axis with a very small velocity after that its velocity increases rapidly to a considerable value, and soon. [Pg.385]

Figure 4.25. Detection of an outlier by Huber s method. Upper panel Abscissa Content [mg] dark points Measurements (A) Huber s cut-off at k = 3.5, The median is marked with an up tic Xniean is marked with an up, down tic. The circled point is the one that is proposed... Figure 4.25. Detection of an outlier by Huber s method. Upper panel Abscissa Content [mg] dark points Measurements (A) Huber s cut-off at k = 3.5, The median is marked with an up tic Xniean is marked with an up, down tic. The circled point is the one that is proposed...
The important point is that v E,k) and A0( ,fe) are multivalued, with a logarithmic branch point at fe = s = 0, while the residual functions m(e, k, zo) and w(e, k) are single valued. The result, as discussed in more detail later, is that the value of the quantum number v depends on the chosen location of the branch cut and on which Riemann sheet is taken, bearing in mind that the branch of arctan( /fe) must be taken according to the appropriate quadrant of the complex k, e) plane. Thus cj) = arctan( /fe) + ti/2 increases smoothly from zero to In around a counterclockwise circle in the k, e) plane, starting at = 0 and < 0. [Pg.50]

Figure 8 Measure of delocalisation of each defect type predicted by resonance theory. The loops enclose centres which have numbers of classical structures larger than. 74 times the greatest number in the type. The cut-off point for type bi (or type 63) centres is particularly arbitrary since the delocalisation is spread around the equator. The small circles are the point of muonium attachment. The dotted circle is coincident with the equator of Cra-... Figure 8 Measure of delocalisation of each defect type predicted by resonance theory. The loops enclose centres which have numbers of classical structures larger than. 74 times the greatest number in the type. The cut-off point for type bi (or type 63) centres is particularly arbitrary since the delocalisation is spread around the equator. The small circles are the point of muonium attachment. The dotted circle is coincident with the equator of Cra-...

See other pages where Cutting circles is mentioned: [Pg.56]    [Pg.66]    [Pg.559]    [Pg.56]    [Pg.559]    [Pg.65]    [Pg.65]    [Pg.445]    [Pg.66]    [Pg.559]    [Pg.56]    [Pg.124]    [Pg.125]    [Pg.125]    [Pg.125]    [Pg.313]    [Pg.186]    [Pg.225]    [Pg.56]    [Pg.66]    [Pg.559]    [Pg.56]    [Pg.559]    [Pg.65]    [Pg.65]    [Pg.445]    [Pg.66]    [Pg.559]    [Pg.56]    [Pg.124]    [Pg.125]    [Pg.125]    [Pg.125]    [Pg.313]    [Pg.186]    [Pg.225]    [Pg.499]    [Pg.500]    [Pg.162]    [Pg.1107]    [Pg.308]    [Pg.287]    [Pg.79]    [Pg.97]    [Pg.116]    [Pg.27]    [Pg.139]    [Pg.426]    [Pg.725]    [Pg.289]    [Pg.401]    [Pg.171]   
See also in sourсe #XX -- [ Pg.124 ]




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