Mathematical analysis of truncated hexahedron (cube)



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mathematicalanalysisoftruncatedhexahedron-150108035741-conversion-gate01

 
 
 
 
Figure 1: A right pyramid with base as an equilateral 
triangle with side length 
𝒂
& normal height h is 
truncated off from a regular hexahedron (cube) 
with edge length 
𝟏 + 𝟐 𝒂
 
Figure 2: Each of the congruent square faces with 
edge length 
𝟏 + 𝟐 𝒂
of a regular hexahedron is 
changed into a regular octagonal face with edge 
length 
𝒂
 by truncation of vertices.
 


Mathematical analysis of truncated hexahedron (cube)
Application of HCR’s formula for regular polyhedrons (all five platonic solids) 
Applications of “HCR’s Theory of Polygon” proposed by Mr H.C. Rajpoot (year-2014) 
©All rights reserved 
 
Calculation of edge length of parent regular hexahedron: 
Let 
be the edge length of each face of a truncated hexahedron to be generated by truncating a parent 
regular hexahedron with edge length PQ (unknown).
In right 
+ +
+
+ + +
+
 
Above result shows that if we are to generate a truncated hexahedron with edge length 
then we have to 
truncate all 8 vertices of a regular hexahedron (cube) of edge length 
+
Analysis of Truncated hexahedron by using equations of right pyramid & regular hexahedron 
Now consider any of 8 truncated off congruent right pyramids having base as an equilateral triangle ABD with 
side length 
, normal height 
& right angle 
between any two consecutive lateral edges (see figure 3 
below)
Normal height (
) of truncated off right pyramid
: We know that the normal height of any 

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