Napoleon's Mathematician: The Life and Contradictions of Gaspard Monge!
[music]
[music]
In the whirlwind of gunpowder and blood
that defined the end of the 18th
century, a nation's survival depended
not only on the brute force of its
soldiers, but on the absolute precision
of its mathematicians.
While the French Revolution guillotined
the past, one man rewrote the rules of
three-dimensional space, Gaspard [music]
M didn't just see numbers. He saw
reality as a geometric spectacle in
motion to hide French fortifications
from enemy eyes and cannons. He invented
a method so revolutionary that it was
kept as a state secret, descriptive
geometry.
But the brilliant mind that founded the
AOL [music] poly technique and gave rise
to differential geometry harbored a
fatal contradiction. Seduced by power
and glory, he followed Napoleon Bonapart
to the sands of Egypt and to the ashes
of exile. Today we unveil the life of
Gaspard M, [music]
the unparalleled mathematician whose
spatial lucidity walked handinhand with
the blindest political passion.
The Greatest [music] Mathematicians of
All Time. Episode 68. Gaspard Mong.
Gaspard M was born on May 9th, 1746
in Bone, Burgundy, France.
Gaspar M became the count of Paloo later
in life and is sometimes known by this
title. His father was Jacqu Mge, a
merchant originally from upper Seavoi
[music] in southeastern France.
Gasbard's mother, whose maiden name was
Jean Rouso, was a native of Burgundy,
and it was in the town of Bone, also in
Burgundy, that Gasbard was raised.
Around the time of Gasbart's birth, Bone
following a period of decline was
thriving once again due to the success
of the wine trade. Mge attended the
Ortorian College in Bone. This school
catered to young noblemen and was run by
priests. The institution offered a more
liberal education than other religious
schools, providing instruction not only
in the humanities but also in history,
mathematics and natural sciences. It was
at this school that M first demonstrated
his brilliance. In 1762 at the age of
16, Mer went to Leon where he continued
his studies at the college deinit.
Despite being only 17 at the time, he
was put in charge of teaching a physics
course. Upon completing his studies in
1764, Mon returned to Bone where he
created a map of the town.
The bond plan that M constructed would
have a great influence on the direction
his career would take as it was seen by
a member of the faculty at the Echole
Royale de Janei in Mesier.
He was very impressed with [music] Ma's
work and in 1765
M was [music] appointed draftsman of the
institution. Of course, in this
position, he performed tasks that did
not entirely please him as he aspired to
a position in life that made much more
use of his mathematical talents.
However, the AOL royale dujenei put Moj
in contact with Charles Bosu who was the
mathematics professor there. Initially,
Malia's position did not require the use
of his mathematical talents, but he
worked in his free time developing his
own ideas about geometry.
About a year after becoming a draftsman,
M received an assignment that allowed
him to use his mathematical skills.
Tasked with devising a fortification
plan that would prevent the enemy from
seeing or firing at a military position,
regardless of its location, he created
his own graphical method for
constructing such a fortification
instead of using the complex methods
available at the time. This method made
full use of the geometric techniques
that M had been developing. His
mathematical skills were then recognized
at the Akol Royale dujenei and it was
realized that he possessed exceptional
abilities in both theoretical and
practical disciplines. When Bassut was
elected to the academy deants in 1768,
Mge left the AKL de Masier to become a
professor of hydrodnamics at the Louvre.
On January 22nd, 1769,
M wrote to Bassut explaining that he was
writing a paper on the evolutes of
double curvature curves. He asked Bosu
for his opinion on the originality and
usefulness of the work. Bosu must have
responded very positively for in June
the first publication by Munchch was
[music] published in the journal
Encyclopedic presenting a summary of the
results he had obtained. This article in
which m generalized the results obtained
by Huygens [music] on spatial curves as
part of Huygens's investigation of the
pendulum and added many important new
discoveries is described in detail in
Renee Taton's article published in the
review dtoire deceor application volume
19 number two pages 143 to 149.
The complete work was submitted to the
academi dece in Paris in October 1770
and read before the academi in August
1771, although it was not published by
them [music] until 1785.
When Basu left the Akol Royale Du Janei
in Masier, M was appointed to succeed
him in January 1769.
In 1770, he received an additional
position at the school being appointed
instructor of experimental physics.
Although this represented a major
[music] step in his career, Mong was
more interested in consolidating his
name as a mathematician in higher
circles.
Realizing he needed the guidance of
leading mathematicians, he sought out
Dalbear and Condors in early 1771.
Condors must have been impressed by the
depth of mathematics demonstrated by m
as he recommended that he submit papers
to the academy desiance in each of the
four areas in which he was researching.
The four papers m submitted to the
academy were on a generalization of the
calculus of variations infinite decimal
geometry the theory of partial
differential equations and
combinotaurics.
In the following years, he submitted a
series of important papers to the
academy on partial differential
equations which he studied from a
geometric point of view. His interest in
subjects beyond mathematics began to
grow and he became interested in
problems in both physics and chemistry.
In 1777,
Mge married Katherine Huart and as his
wife owned a forge, he became interested
in metallurgy in addition to his broad
mathematical and scientific interests.
Still deeply involved in teaching at the
Akol Royale Du Janei in Masier, he
organized the installation of a
chemistry laboratory there. From 1780
onwards, however, he devoted less time
to his work in Mesier as in that year he
was elected associate geometer of the
academia deions in Paris. From then on
he spent long periods in Paris teaching
a course in hydrodnamics as a substitute
for bassu as well as participating in
projects carried out by the academia in
the areas of mathematics, physics and
chemistry. It was not possible to
reconcile all of this and teach all his
courses in Mier. But he kept his
positions there and received his full
salary with which he paid other
professors to teach some courses in his
place. After 3 years dividing his time
between Paris and Mezier, M received
another job offer to replace Beasoot as
an examiner of naval cadets.
M would have liked to keep all these
positions, but after trying to organize
an impossible schedule for about a year,
he decided that he would have to resign
from his positions in Mesier, which he
did in December 1784.
In the following 5 years, despite the
heavy obligations as an examiner, M
carried out research in a wide range of
scientific subjects, presenting papers
to the academy on the composition of
nitrous acid, the generation of curved
surfaces, finite difference equations,
partial differential equations, 1785,
double refraction, and the structure of
Iceland spar, the composition of iron,
steel, and cast iron.
and the action of electric sparks on
carbon dioxide gas, 1786.
Capillary phenomena, 1787, and the
causes of certain meteorological
phenomena, 1788.
And a study in physiological optics,
1789.
It is clear that 1789 was a landmark
year in French history with the storming
of the Bastile on July 14th, 1789
marking the beginning of the French
Revolution.
This event would completely change the
course of Ma's life. At the start of the
revolution, he was one of the leading
scientists in Paris with an exceptional
research record in a wide variety of
sciences, experience as an examiner and
in school reforms which he had
implemented in 1786 as part of his
duties as an examiner.
Politically, M was a strong supporter of
the revolution and his first actions
were to demonstrate his support by
joining various societies that supported
it. But he continued with his normal
duties as an examiner of naval cadets
and as an important figure in the work
of the academy. At this time he was
already part of the important weights
and measures commission of the academy.
Louis V 16th attempted to flee the
country on June 20th, 1791,
but was apprehended in Ven and brought
back to Paris, ending attempts to share
power between the king and an assembly.
Relations with Europe deteriorated when
the National Assembly declared that a
people had the right to
self-determination.
France declared war on Austria and
Prussia on April 20th, 1792.
French defeats led to unrest in France.
And on August 10th, 1792,
further popular revolutions occurred
with assassinations of nobles and clergy
during the month of September.
On September 21st, the monarchy was
abolished in France and a republic was
proclaimed.
The national convention offered Mj the
post of minister of the navy in the
government. Without disrespecting ME, it
was impossible to satisfy the rather
extremist views of many people and his
time as minister of the Navy cannot be
considered a success.
Although he persevered under difficult
circumstances, he remained in office for
only 8 months before giving up the
relentless struggle with his allies and
submitting his resignation on April
10th, 1793.
For a few months, M returned to his work
at the Academy of Sciences. But this did
not last long as on August 8th, 1793,
the institution was abolished by the
National Convention. Still a staunch
Republican and supporter [music] of the
revolution, M worked on several military
projects related to weapons and
explosives. He wrote articles on the
subjects and also taught courses on
these military matters. He continued to
serve on the commission of weights and
measures which survived despite the end
of the academy desiance. He also
proposed educational reforms to the
national convention. However, although
his proposal was accepted on September
15th, 1793,
it was rejected the following day. Such
was the volatile nature of decisions in
that unstable period.
M was appointed by the national
convention on March 11th, 1794
to the body created to establish the
Akolle central devo public which would
soon become the AOL poly technique. He
not only had a great influence on the
creation of the institution using his
experience in messier very effectively
but was also appointed instructor of
descriptive geometry on November 9th
1794.
His first task as instructor was to
train the future teachers of the school
which began operating in June 1795.
Ma's lectures on infinite decimal
geometry would form the basis of his
book application de la Analise allege
geometry. Another educational
institution the aol normal was created
to train secondary school teachers and m
taught a course in descriptive geometry
there. He was also a great supporter of
the academia deos and worked hard to
have it reinstated as the institute
national.
The national convention approved the new
institution on October 26th 1795.
However, from May 1796
to October 1797,
M was in Italy on a mission to select
the finest artistic treasures for the
conquerors and bring them to France. Of
particular importance was the fact that
he befriended Napoleon Bonapart during
his stay in Italy.
Napoleon had defeated Austria and signed
the treaty of Campo Formio on October
17th, 1797,
an exceptionally advantageous agreement
for France, which preserved most of the
French conquests.
Mge returned to Paris, bringing with him
the text of the treaty of Campo Formio.
Back in Paris, M resumed his previous
duties and was appointed to the
prestigious position of director of the
AOL poly technique. In February 1798,
M was back in Rome involved in the
founding of the Roman Republic. In
particular, he proposed a project for
advanced schools in the Roman Republic.
Napoleon Bonapart then asked M to join
him on his expedition to Egypt and
somewhat reluctantly M agreed. Mge left
Italy on May 26th 1798 and joined
Napoleon's expeditionary force. The
expedition which included the
mathematicians Forier and Mollis as well
as Moj was initially a great success.
Malta was occupied on June 10th, 1798.
Alexandria was stormed on July 1st, and
the Nile Delta was quickly conquered.
However, on August 1st, [music] 1798,
the French fleet was completely
destroyed by Nelson's [music] fleet at
the Battle of the Nile. So, Napoleon
found himself confined to the lands he
occupied. M was appointed president of
the Egyptian institute in Cairo on
August 21st.
The institute had 12 members in the
mathematics division including Forier
Mollis
and Napoleon Bonapart himself.
During the [music] difficult times with
Napoleon in Egypt and Syria, Mj
continued to work on perfecting his
treatis [music] application donles
algeometry.
Napoleon abandoned his army and returned
to Paris in 1799.
Soon seizing absolute power in France, M
returned to Paris on October 16th, 1799
and resumed his post as director of the
AOL poly technique. He discovered that
his academic memoir geometry descriptive
had been published earlier in 1799.
This had happened at the request of his
wife and was compiled by Hashet from
Mong's lectures at the Akol normal.
On November 9th, 1799,
Napoleon and two other leaders seized
power in a military coup and a new
government, the consulate, was
established.
Napoleon appointed Maul a senator for
life of the consulate. Maul gladly
accepted, although his Republican views
meant he opposed the military
dictatorship Napoleon imposed on France.
The truth must be that M was dazzled by
Napoleon and accepted all the honors and
gifts the emperor bestowed upon him.
Grand officer of the Legion of Honor in
1804, president of the Senate in 1806,
Count of Paloo in 1808 among others. In
the following years, M continued to
pursue a range of activities, fulfilling
his role as a senator and maintaining an
interest in mathematical research.
Although his mathematical work primarily
involved teaching and writing books for
students at the Akal Poly technique.
Gradually [music] he became less
involved in mathematical research and
from 1809 onwards [music]
abandoned teaching due to his failing
health. In June 1812, Napoleon assembled
his grand army numbering approximately
453,000
men, including Prussian and Austrian
soldiers who were forced to serve and
marched on Russia. The campaign was a
disaster, but in September, Napoleon's
army entered a deserted Moscow. Napoleon
retreated. The Prussians and Austrians
deserted the Grand Arma and there were
coup attempts against the emperor in
Paris. Mge was dismayed by the situation
and his health suddenly deteriorated.
He recovered slowly after Napoleon
abandoned what remained of his army and
returned to Paris to reaffirm his
authority. After Napoleon achieved some
military success in 1813, the Allied
armies against him grew stronger, Mong
was sent to Leazge to organize the
city's defense against an attack. The
Allied armies began to advance on France
and Mj fled. When Napoleon abdicated on
April 6th, 1814, Mge was not in Paris,
but he soon returned and tried to
rebuild his life. Napoleon escaped from
Elba where he had been [music] exiled
and by March 20th 1815 he was back in
Paris. Mge immediately joined him and
gave him his unconditional support.
After Napoleon's defeat in Waterloo, Mge
continued to see him until the emperor
was put aboard a ship on July 15th. In
October, Mge feared for his life and
fled France, returning to Paris only in
March 1816.
2 days after his return, he was expelled
[music] from the institute to France and
from then on his life became extremely
difficult as he [music] was politically
persecuted and constantly threatened.
Manga's political career is treated with
benevolence, but Gorland adopts a more
critical view.
Manga's management of the Ministry of
the Navy was a complete failure and he
presided over the cultural plunder of
Italy and Egypt. If Napoleon really said
that M loved him like a mistress, this
proves that the most absolute
mathematical clarity can go hand in hand
with political blindness.
We have frequently discussed M's [music]
scientific work. He is considered the
father of differential geometry due to
his work application danala geometry in
which he introduced the concept of lines
of curvature on a surface in
three-dimensional space. He developed a
general method for applying geometry to
construction problems in
three-dimensional space. He also
introduced two mutually perpendicular
planes of projection for the graphical
description of solid objects. These
techniques were generalized into a
system called geometry descriptive known
today as orthographic projection. The
graphical method used in modern
mechanical drafting. The basic
philosophy behind Monga's mathematical
approach is discussed by Edward Glass in
on the dynamics of mathematical change
in the case of M and the French
Revolution.
Studies in history and philosophy of
science volume 17 1986 pp 249 to 268
where the author states that ma's
objectives were
the geometrization of mathematics based
on first the analogy or correspondence
between operations in analysis and
geometric transformations.
Second, the genetic classification and
parameterization of surfaces through the
analysis of the motion of generating
lines. Mange viewed analysis not as a
self-sufficient language, but merely as
the script for the geometric spectacle
in motion that constitutes reality. His
new approach focused on the deeper, more
intimate and universal relationships
within space and its transformations,
placing him in a position to
interconnect geometry and analysis in a
fertile and unprecedented way. Practical
concerns led Maj to perceive the object
and function of mathematics in a new
light in defiance of the formalist
linguistic standards established by the
revered patrons of mathematics. The fall
of the Napoleonic Empire also brought
about the tragic end for its most
devoted scientist. With Napoleon's final
defeat at Waterlue and the restoration
of the monarchy in 1815,
Gasbard M went from national hero to a
hunted man. Expelled from the Institute
to France, stripped of his [music]
honors and living under constant
political threat, his once unshakable
health collapsed. Mge passed away on
July 28th, 1818 in Paris. The royal
government, fearing the influence of his
legacy, strictly forbade any public
tribute. Yet, in an act of quiet
defiance and profound respect, students
from the Ale [music]
technique defied state orders and
marched to the cemetery to pay their
final respects to their [music] master.
Ma's life leaves us with a troubling
question. Does even the most brilliant
mathematical [music]
clarity justify such blind political
loyalty? Leave your opinion in [music]
the comments below. And if you want to
keep exploring the minds that built our
world, subscribe to the channel, hit the
like button, and share this documentary.
See you on the next journey [music]
through the history of science.
More transcripts
Explore other videos transcribed with YouTLDR.

Mi niñez fue un fusil AK-47
Comisión de la Verdad · Spanish

7. Un Remanente Fiel - Pr. Esteban Bohr || Verdades Para Este Tiempo
SUMtv Latino · Spanish

PENGERTIAN RELASI, FUNGSI, DOMAIN,KODOMAIN DAN RANGE
Utak Atik Otak · English

ساعة الأثرياء | الدحيح
New Media Academy Life · Arabic

You Won't Believe How Easy AlpineQuest Software Makes Geological Field Work | Offline Mapping
MOoDY 4 knOwledge · English

Mundos Olvidados
Cinematix · English

🎨 Apa Itu Sebenarnya Pelajaran Seni? #BelajardiRumah
Kok Bisa? · English

Bab-I: Teks Laporan Hasil Observasi kelas 10 SMA/SMK ~ Bahasa Indonesia
Belajar Prestasi · Indonesian

KONSEP BUDAYA| PENGERTIAN BUDAYA DAN SENI
BU APRIL · Indonesian

العقيدة الطحاوية (٤٠) | شرح أ.د. صالح سندي
أ.د. صالح سندي · English

Living the Change: Inspiring Stories for a Sustainable Future (Free Full Documentary)
Happen Films · Indonesian

SENI BUDAYA (SENI TARI) "ELEMEN DASAR TARI"
Budianing DNA · English
Get the TLDR of any YouTube video
Process a new video with YouTLDR Pro — transcripts, summaries, translations, and repurposing in 125+ languages.