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Shortly after completing my 1:250
scale model Khufu pyramid (the Great Pyramid at Giza), I found a
millipede curled around its peak. I was startled to see it there.
Millipedes do not normally seek heights. They grovel around in the
dirt or hide under stones, eating dead plant material. What was this
guy doing, poised way up on the peak of my pyramid?
What had inspired it to climb the
mighty pyramid—some 30 times its size, something equivalent to a
human scaling an eight-story building? Was it seeking enlightenment?
Was it compulsively drawn by the mystical power of my pyramid?
A day or two went buy and the
millipede did not move. Was it still alive? Had it clambered up Mount
Pyramid, only to expire at the summit? The mystery deepened. I have
heard of pyramidical cults that perpetuate the belief that pyramids
possess perplexing powers and energy fields. Had this millipede
succumbed to my pyramid's mystical powers? Had it somehow been
compelled to ascend the structure, seeking some kind of release from
its mundane, muddy existence?
And had it really expired, or was
it being held in suspended animation by the pyramid's magical energy field?
Was it maybe now marinated at the peak, rather like a pharaoh's
mummy—preserved for posterity?
I felt driven to understand this
phenomenon better, so I engaged in some internet searches on
millipedes. These critters are an arthropod (an insect with a jointed
body, with two or more legs on each joint). It is closely related to
the pill millipede—or sow bug—which is much smaller, and rolls
into a ball when frightened or threatened (looking like a pill). The
millipede is slow moving and defends itself by its noxious smell and
bright color.
How does one distinguish a
millipede from a centipede? No it's not 1,000 versus 100 legs, but
(1) a centipede moves much faster (my millipede was extremely slow), (2) it is carnivorous (whereas a
millipede eats rotten vegetation), and (3) centipedes have only two
legs per segment, rather than four. Thank goodness; now I know I
don't have to count hundreds of legs to tell them apart.
More on millipede heaven next
time...
We all know about the Egyptian
pyramids—those tetrahedral tombstones built to house the great
pharaohs' bodies, preserved as mummies in perpetuity. For well over
four thousand years the Great Pyramids of Giza have fascinated
people. They are magnificent engineering feats that were included in
every list of the ancient world's wonders. All the other wonders have
vanished, while the pyramids endure.
I recently took an online course
from Harvard University, on the Pyramids of Giza. The experience
inspired me to construct my own pyramid—a 250th scale
model of the Pyramid of Khufu, which is also known as the Great
Pyramid at Giza. Here are a few impressive geometric facts about this
largest Egyptian tetrahedral tombstone: It is 481 feet (147 m) tall.
That's equivalent to nearly the height of a 50-story building! The
length of a side is 755 feet (230 m). That's equivalent to two and a
half American football fields long! It is a perfect tetrahedron—that
is, its faces are four equilateral triangles, and was built up using
over 2.5 million stone blocks. That's pretty impressive!
The course noted that the origin of
the idea for Egyptians to build pyramids came from the small,
pyramid-shaped mounds of mud left behind, when the Nile River flooded
each year. The flooded Nile was literally worshiped as a life-giving
phenomenon, so its leftover mud deposits took on a mystical quality.
Eventually, some ancient pharaohs began building geometric structures
inspired by the mud mounds. The first few did not do well. Some were
later torn down (or collapsed), and some had their design modified
during construction, in attempts to make them stable. Finally the
architect Hemiunu designed and oversaw the building of the largest
pyramid for Pharaoh Khufu—built nearly 4600 years ago. The accuracy
with which these tombs were built is astounding. Their longevity is
astonishing.
I became inspired by the Giza
Pyramids, and decided to build my own great pyramid, out of mortar
(mixing cement, sand, and lime). It would be a 1:250 scale model—that
is, 250 times smaller than the original. So the 481 foot tall Khufu's
pyramid scaled down to a height of 23 inches (60 cm), with a side
about 36 inches (90 cm) long. I would not try to build my pyramid
from a couple million stone blocks as the original, but by
constructing a wooden mold, and then filling it with mortar. I'd cast
it while it lay on its side, and then tip it up into place.
The Great Pyramid at Giza is much
more than a solid pile of stone—its interior is riddled with tomb
chambers, passageways, and shafts of air that point toward the sky.
Some of these chambers were hidden, but robbers excavated and stole
many burial artifacts from several of the pyramids.
My 1:250 copy of Khufu's
tetrahedron also has its secret chambers—in the form of bottles and
cans that I immersed in the mortar, in order to decrease its
potential weight from over 800 pounds (370 kg) to something about
half that. Otherwise, tipping it upright would have been more of a
job than I wanted.
I found that my engineering and
construction skills paled in comparison to Egyptian architect
Hemiunu. Maybe I can take solace in the fact that the design and
construction of my pyramid required but a couple of weeks, rather
than the more than 20 years for Khufu's. I discovered a few
complicating factors that I'd not expected, although probably far
fewer than those ancient Egyptians encountered.
So now I have my own cementaceous
tetrahedron—even if it's just a tomb for trash. Will it acquire
some of the mystical powers reputed to be possessed at Giza? I may
have to wait a millennium or two, to find out. I possibly have a
mysterious energy field already, however. The next couple of blog
postings describe what has happened.