(146) · also written as a run, 146a xxx 146n
Optical Tubing
Also written all tubular material · Lens-core · tubular · solid
Where it is first named
than air) of FIG. 8, and solid 146 to liquid 150 of FIG. …
How it is written
- (optical tubing 146) 3×
- (all tubular material 146) 1×
- (Lens-core 146) 1×
- (light-guide stems 144¢ xxx n or 146a xxx n) 1×
- (solid 146) 1×
- (tubular 146) 1×
146a xxx 146n is Meyer's shorthand for a run of the same thing: 146a is the first, 146n the last, and the x's stand for however many lie between. Every stage of the run is this one numeral.
Drawings 17
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Page 4 · Light Guide Lens
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Page 5 · Light Guide Lens
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Page 15 · Light Guide Lens
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Page 17 · Light Guide Lens
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Page 20 · Light Guide Lens
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Page 21 · Light Guide Lens
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Page 22 · Light Guide Lens
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Page 27 · Light Guide Lens
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Page 28 · Light Guide Lens
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Page 29 · Light Guide Lens
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Page 45 · Light Guide Lens
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Page 63 · Light Guide Lens
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Page 85 · Light Guide Lens
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FIG. 163 Tilustrates schematically a side view crosssection of a filter coated flat-surface transparent thin- · Light Guide Lens
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Page 172 · Light Guide Lens
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Page 173 · Light Guide Lens
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Page 174 · Light Guide Lens
Where it is named · 8
Light Guide Lens 8×
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solid (solid 146)
than air) of FIG. 8, and solid 146 to liquid 150 of FIG. …
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tubular (tubular 146)
Beyond the light-lost factor, the criticai angle of reflection 152 can, now, be used to increase the directivity of incident light radiation from that of linear to angular displacement of light transmission. FIG. 13, FIG. 14, FIG. 15, FIG. 16 and FIG. 17, illustrates different critical angle of reflection geometrical design configuration for solid 144 and/or tubular 146 lightguide stems.
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all tubular material (all tubular material 146)
Not only does light-guide stem configuration 144V, light-guide stem configuration 144W, light-guide stem configuration 144X, light-guide stem configuration 144Y, and light-guide stem configuration 144Z applies to any transparent solid material 144 but also applies to all tubular material 146.
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optical tubing (optical tubing 146)
Optical rod 144 light-guide stems (FIG. 24, FIG. 25, FIG. 33, and FIG. 34), air-core 147 optical tubing 146 light-guide stems (FIG. 42, FIG. 43, FIG. 51, and FIG. 52), gas-core 149 optical tubing 146 (FIG. 59 and FIG. 60), and liquid-core 150 optical tubing 146 (FIG. 68 and FIG. 69), all demonstrates the same light deflection principle for angular light transmission.
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optical tubing (optical tubing 146)
Optical rod 144 light-guide stems (FIG. 24, FIG. 25, FIG. 33, and FIG. 34), air-core 147 optical tubing 146 light-guide stems (FIG. 42, FIG. 43, FIG. 51, and FIG. 52), gas-core 149 optical tubing 146 (FIG. 59 and FIG. 60), and liquid-core 150 optical tubing 146 (FIG. 68 and FIG. 69), all demonstrates the same light deflection principle for angular light transmission.
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optical tubing (optical tubing 146)
Optical rod 144 light-guide stems (FIG. 24, FIG. 25, FIG. 33, and FIG. 34), air-core 147 optical tubing 146 light-guide stems (FIG. 42, FIG. 43, FIG. 51, and FIG. 52), gas-core 149 optical tubing 146 (FIG. 59 and FIG. 60), and liquid-core 150 optical tubing 146 (FIG. 68 and FIG. 69), all demonstrates the same light deflection principle for angular light transmission.