Set of 18 Supplementary Crystal Lattice Models

 
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KS7998 Supplementary Set of 18 Lattice Menzer Models

KS7998 Supplementary Set of 18 Lattice Menzer Models

Supplementary set of 18 lattices, according to Prof. Menzer. (Supplementing the translational Bravais lattices.) Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the KS7997 and may be ordered as a...

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KS7998a Monoclinic Lattice with Centered XZ-Plane

KS7998a Monoclinic Lattice with Centered XZ-Plane

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998b Monoclinic Base-centered with Inclined Prism as Primitive Cell

KS7998b Monoclinic Base-centered with Inclined Prism as Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998c Orthorhombic Base-centered with Orthohombic Prism as Primitive Cell

KS7998c Orthorhombic Base-centered with Orthohombic Prism as Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998d Orthorhombic Face-centered Rhombohedral-type Primitive Cell

KS7998d Orthorhombic Face-centered Rhombohedral-type Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998e Orthorhombic Face-centered with Inclined Prism as Primitive Cell

KS7998e Orthorhombic Face-centered with Inclined Prism as Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998f Orthorhombic Body-centered Rhombohedral-type Primitive Cell

KS7998f Orthorhombic Body-centered Rhombohedral-type Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998g Orthorhombic Base-centered with Inclined Prism as Primitive Cell

KS7998g Orthorhombic Base-centered with Inclined Prism as Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998h Tetragonal Base-centered Lattice with Primitive Tetragonal Cell

KS7998h Tetragonal Base-centered Lattice with Primitive Tetragonal Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998i Tetragonal Face-centered Lattice

KS7998i Tetragonal Face-centered Lattice

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998j Tetragonal Face-centered Lattice Rhombohedral-type Primitive Cell

KS7998j Tetragonal Face-centered Lattice Rhombohedral-type Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998k Tetragonal Face-centered Lattice with Inclined Prism as Primitive Cell

KS7998k Tetragonal Face-centered Lattice with Inclined Prism as Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998l Rhombohedral Lattice with Hexagonal Prism

KS7998l Rhombohedral Lattice with Hexagonal Prism

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998m Rhombohedral Lattice in Hexagonal Prism (60 angle: cubic close packing)

KS7998m Rhombohedral Lattice in Hexagonal Prism (60 angle: cubic close packing)

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998n Rhombohedral Lattice : Hexagonal Prism

KS7998n Rhombohedral Lattice : Hexagonal Prism

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998o Hexagonal Lattice: Hexagonal Prism

KS7998o Hexagonal Lattice: Hexagonal Prism

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998p Cubic Face-centered Lattice with Rhombohedral Primitive Cell

KS7998p Cubic Face-centered Lattice with Rhombohedral Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998q Cubic Body-centered Lattice with Rhombohedral Primitive Cell

KS7998q Cubic Body-centered Lattice with Rhombohedral Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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KS7998r Cubic Face-centered Lattice with Inclined Prism as Primitive Cell

KS7998r Cubic Face-centered Lattice with Inclined Prism as Primitive Cell

Supplementing the translational Bravais lattices, these lattices, according to Prof. Menzer show how the natural crystal structures transition. Models are approximately 20 cm high. Primitive cells are identified by means of colored rods. Models are constructed to the same specifications as the...

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