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Vitaliy Kaurov
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Looking at the way you specifying your region, you might want an alternative to Graphics3D primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling. This is more complex than Graphics3D but advantage is this can go to more complex regions for which there is graphicsno Graphics3D primitives, for example:

reg = ImplicitRegion[4 <= x^2 + y^2 + z^2 <= 9, {x, y, z}];
RegionPlot3D[reg, PlotStyle -> Opacity[0.5], PlotPoints -> 50]

enter image description here

Looking at the way you specifying your region, you might want an alternative to Graphics3D primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling. This is more complex than Graphics3D but advantage is this can go to more complex regions for which there is graphics primitives, for example:

reg = ImplicitRegion[4 <= x^2 + y^2 + z^2 <= 9, {x, y, z}];
RegionPlot3D[reg, PlotStyle -> Opacity[0.5], PlotPoints -> 50]

enter image description here

Looking at the way you specifying your region, you might want an alternative to Graphics3D primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling. This is more complex than Graphics3D but advantage is this can go to more complex regions for which there is no Graphics3D primitives, for example:

reg = ImplicitRegion[4 <= x^2 + y^2 + z^2 <= 9, {x, y, z}];
RegionPlot3D[reg, PlotStyle -> Opacity[0.5], PlotPoints -> 50]

enter image description here

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Source Link
Vitaliy Kaurov
  • 73.4k
  • 9
  • 206
  • 365

Looking at the way you specifying your region, you might want an alternative to GraphicsGraphics3D primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling. This is more complex than Graphics3D but advantage is this can go to more complex regions for which there is graphics primitives, for example:

reg = ImplicitRegion[4 <= x^2 + y^2 + z^2 <= 9, {x, y, z}];
RegionPlot3D[reg, PlotStyle -> Opacity[0.5], PlotPoints -> 50]

enter image description here

Looking at the way you specifying your region, you might want an alternative to Graphics primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling.

Looking at the way you specifying your region, you might want an alternative to Graphics3D primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling. This is more complex than Graphics3D but advantage is this can go to more complex regions for which there is graphics primitives, for example:

reg = ImplicitRegion[4 <= x^2 + y^2 + z^2 <= 9, {x, y, z}];
RegionPlot3D[reg, PlotStyle -> Opacity[0.5], PlotPoints -> 50]

enter image description here

added 47 characters in body
Source Link
Vitaliy Kaurov
  • 73.4k
  • 9
  • 206
  • 365

Looking at the way you specifying your region, you might want an alternative to GraphicsGraphics primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling.

Looking at the way you specifying your region, you might want an alternative to Graphics primitives approach. Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling.

Looking at the way you specifying your region, you might want an alternative to Graphics primitives approach (Cuboid would be the simples in your case). Specify:

reg = ImplicitRegion[.1<x<9.2 && .026<y<28.97 && 0<z<5.23, {x, y, z}]

Then use

Region[reg]

enter image description here

or alternatively

RegionPlot3D[reg, PlotPoints -> 50, Axes -> True]

enter image description here

For both functions RegionPlot3D and Region you should explore various options of visual styling.

Source Link
Vitaliy Kaurov
  • 73.4k
  • 9
  • 206
  • 365
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