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Physical Collection (page 23)

"Exploring the Physical Realm: From Colour Wheels to Proton Collisions and Beyond" Step into the fascinating world of physics

Background imagePhysical Collection: The eye: cross section of a human eye. Anonymous illustration from 1925

The eye: cross section of a human eye. Anonymous illustration from 1925
XEE4140484 The eye: cross section of a human eye. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: The eye: cross section of a human eye)

Background imagePhysical Collection: Prisms and lenses: Metzus son. The Dutch Jacob Metzu (Jacques Metius

Prisms and lenses: Metzus son. The Dutch Jacob Metzu (Jacques Metius
XEE4140463 Prisms and lenses: Metzus son. The Dutch Jacob Metzu (Jacques Metius) discovered the telescope by chance in 1609, watching his son playing with concave and convex glasses

Background imagePhysical Collection: Light Propagation: The Dark Room. Anonymous illustration from 1925. Private collection

Light Propagation: The Dark Room. Anonymous illustration from 1925. Private collection
XEE4140382 Light Propagation: The Dark Room. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: Light Propagation: The Dark Room)

Background imagePhysical Collection: Light Propagation: Greek Erathostene (3rd century BC) calculated the radius of the earth

Light Propagation: Greek Erathostene (3rd century BC) calculated the radius of the earth
XEE4140380 Light Propagation: Greek Erathostene (3rd century BC) calculated the radius of the earth using the shade of the sun on the day of the summer solstice. Anonymous illustration from 1925

Background imagePhysical Collection: The steam machine: cross-cutting of a drummer hammer. Anonymous illustration from 1925

The steam machine: cross-cutting of a drummer hammer. Anonymous illustration from 1925
XEE4140285 The steam machine: cross-cutting of a drummer hammer. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: The steam machine)

Background imagePhysical Collection: The steam machine: cross section of a steam turbine. Anonymous illustration from 1925

The steam machine: cross section of a steam turbine. Anonymous illustration from 1925
XEE4140273 The steam machine: cross section of a steam turbine. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: The steam machine)

Background imagePhysical Collection: Calorimetry: the latent heat of vaporization measured by Marcellin Berthelot

Calorimetry: the latent heat of vaporization measured by Marcellin Berthelot
XEE4140098 Calorimetry: the latent heat of vaporization measured by Marcellin Berthelots calorimeter (1827-1907). Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Changes in states: vapours. Variation of voltage depending on the nature of the liquid or

Changes in states: vapours. Variation of voltage depending on the nature of the liquid or
XEE4140090 Changes in states: vapours. Variation of voltage depending on the nature of the liquid or temperature. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Changes in states: vapours. Water cannot exist above 365 degres (critical point)

Changes in states: vapours. Water cannot exist above 365 degres (critical point)
XEE4140087 Changes in states: vapours. Water cannot exist above 365 degres (critical point). Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Changes in states: slow vaporization (wind action) or boiling (heat under a pan)

Changes in states: slow vaporization (wind action) or boiling (heat under a pan)
XEE4140073 Changes in states: slow vaporization (wind action) or boiling (heat under a pan). Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Changes in states: table representing water vapour pressure at various degrees

Changes in states: table representing water vapour pressure at various degrees
XEE4140067 Changes in states: table representing water vapour pressure at various degrees. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: The steam machine: James Watt principle (1736-1819). Anonymous illustration from 1925

The steam machine: James Watt principle (1736-1819). Anonymous illustration from 1925
XEE4141061 The steam machine: James Watt principle (1736-1819). Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: The steam machine)

Background imagePhysical Collection: Ether (material): the light of a lighthouse in the night

Ether (material): the light of a lighthouse in the night
XEE4140038 Ether (material): the light of a lighthouse in the night. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Induction: Law of Heinrich Lenz (1804-1865) which gives the direction of current in

Induction: Law of Heinrich Lenz (1804-1865) which gives the direction of current in
XEE4141042 Induction: Law of Heinrich Lenz (1804-1865) which gives the direction of current in the induced circuit and rules of James Clerck Maxwell (1831-1879) or corkscrew rule

Background imagePhysical Collection: Atom and Science: Hydrogen Atom. Anonymous illustration from 1925. Private collection

Atom and Science: Hydrogen Atom. Anonymous illustration from 1925. Private collection
XEE4141030 Atom and Science: Hydrogen Atom. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: Atom and Science: Hydrogen Atom)

Background imagePhysical Collection: Radium: discovered radium by Pierre (1859-1906) and Marie Curie (1867-1934) in 1898

Radium: discovered radium by Pierre (1859-1906) and Marie Curie (1867-1934) in 1898
XEE4141018 Radium: discovered radium by Pierre (1859-1906) and Marie Curie (1867-1934) in 1898. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Sound energy: interference of sounds observed while listening to the beat of a bumblebee

Sound energy: interference of sounds observed while listening to the beat of a bumblebee
XEE4139953 Sound energy: interference of sounds observed while listening to the beat of a bumblebee. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Sound energy: sound is vibratory motion. Anonymous illustration from 1925

Sound energy: sound is vibratory motion. Anonymous illustration from 1925
XEE4139943 Sound energy: sound is vibratory motion. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: Sound energy: sound is vibratory motion)

Background imagePhysical Collection: Sound energy: intense sound. The bass drum of a military band

Sound energy: intense sound. The bass drum of a military band
XEE4139940 Sound energy: intense sound. The bass drum of a military band. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Vibratory movements: formula of the frequency of the number of peats per second

Vibratory movements: formula of the frequency of the number of peats per second
XEE4139918 Vibratory movements: formula of the frequency of the number of peats per second. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Gas pressure: the gases are heavy. Experience of the bladder of Aristotle (384-322 BC

Gas pressure: the gases are heavy. Experience of the bladder of Aristotle (384-322 BC
XEE4139837 Gas pressure: the gases are heavy. Experience of the bladder of Aristotle (384-322 BC) on the gravity of the air

Background imagePhysical Collection: Liquid balance: principle of Blaise Pascal (1623-1662) and Joseph Bramah

Liquid balance: principle of Blaise Pascal (1623-1662) and Joseph Bramah
XEE4139816 Liquid balance: principle of Blaise Pascal (1623-1662) and Joseph Bramahs leather (1748-1814) used in hydraulic presses. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Work and power: the power of a horse is 75 kilogrammetres per second

Work and power: the power of a horse is 75 kilogrammetres per second
XEE4139788 Work and power: the power of a horse is 75 kilogrammetres per second. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Work and power: measurement of power with Prony brake. Anonymous illustration from 1925

Work and power: measurement of power with Prony brake. Anonymous illustration from 1925
XEE4139782 Work and power: measurement of power with Prony brake. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: Work and power)

Background imagePhysical Collection: The pendulum: experience of Leon Foucault (1819-1868) at the Pantheon in 1851

The pendulum: experience of Leon Foucault (1819-1868) at the Pantheon in 1851
XEE4139769 The pendulum: experience of Leon Foucault (1819-1868) at the Pantheon in 1851 and demonstrating the rotation of the Earth. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Grainness: law of spaces. Galilee (or Galileo Galilei (1564-1642

Grainness: law of spaces. Galilee (or Galileo Galilei (1564-1642
XEE4139745 Grainness: law of spaces. Galilee (or Galileo Galilei (1564-1642) observes the movement of a ball on an inclined plane to study the fall of bodies. Anonymous illustration from 1925

Background imagePhysical Collection: Movements: a teacher teaches the formulas of movement uniformly varies

Movements: a teacher teaches the formulas of movement uniformly varies
XEE4139714 Movements: a teacher teaches the formulas of movement uniformly varies. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Movements: uniform circular motion generates by a force called centripete

Movements: uniform circular motion generates by a force called centripete
XEE4139711 Movements: uniform circular motion generates by a force called centripete. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Movements: straight uniform movement. A train moving on a railway

Movements: straight uniform movement. A train moving on a railway
XEE4139700 Movements: straight uniform movement. A train moving on a railway. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Forces: parallel forces. Basket of apples lifts with a pole by two men of different

Forces: parallel forces. Basket of apples lifts with a pole by two men of different
XEE4139685 Forces: parallel forces. Basket of apples lifts with a pole by two men of different forces. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Forces: competing forces in balance. Children pulling on a ring

Forces: competing forces in balance. Children pulling on a ring
XEE4139660 Forces: competing forces in balance. Children pulling on a ring, each by a rope from their side, while remaining in balance. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Electric power: electric sewing machine. Anonymous illustration of 1925

Electric power: electric sewing machine. Anonymous illustration of 1925
XEE4139658 Electric power: electric sewing machine. Anonymous illustration of 1925. Private collection. by Anonymous; Private Collection; (add.info.: Electric power: electric sewing machine)

Background imagePhysical Collection: Energy does not wear out: horse attaches to a manege and hears water in a reservoir

Energy does not wear out: horse attaches to a manege and hears water in a reservoir
XEE4139655 Energy does not wear out: horse attaches to a manege and hears water in a reservoir. Anonymous illustration from 1925. Private collection

Background imagePhysical Collection: Potential energy: horses resting in a stable. Anonymous illustration from 1925

Potential energy: horses resting in a stable. Anonymous illustration from 1925
XEE4139652 Potential energy: horses resting in a stable. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: Potential energy)

Background imagePhysical Collection: Idee of energy: athlete lifting a weight. Anonymous illustration of 1925

Idee of energy: athlete lifting a weight. Anonymous illustration of 1925
XEE4139645 Idee of energy: athlete lifting a weight. Anonymous illustration of 1925. Private collection. by Anonymous; Private Collection; (add.info.: Idee of energy: athlete lifting a weight)

Background imagePhysical Collection: Energy of gravity: wheel of a water mill. Anonymous illustration from 1925

Energy of gravity: wheel of a water mill. Anonymous illustration from 1925
XEE4139642 Energy of gravity: wheel of a water mill. Anonymous illustration from 1925. Private collection. by Anonymous; Private Collection; (add.info.: Energy of gravity: wheel of a water mill)

Background imagePhysical Collection: Hydraulic: demonstration and verification of Toricelli formula

Hydraulic: demonstration and verification of Toricelli formula
XEE4139637 Hydraulic: demonstration and verification of Toricelli formula. The Italian physicist Evangelista Torricelli or Toricelli (1608-1647)

Background imagePhysical Collection: Berthollet visiting Lavoisier at the Sorbonne laboratory - in '

Berthollet visiting Lavoisier at the Sorbonne laboratory - in "
LSE4101812 Berthollet visiting Lavoisier at the Sorbonne laboratory - in " The universe and humanity" by H. Kraemer by Unknown Artist

Background imagePhysical Collection: Chemistry classes at the Ecole Centrale de Paris. Engraving in '

Chemistry classes at the Ecole Centrale de Paris. Engraving in "
XEE4132864 Chemistry classes at the Ecole Centrale de Paris. Engraving in " le journal de la jeunesse " 1887. by French School

Background imagePhysical Collection: Luigi Galvani causes frog contractions by lightning rod electricite - LUIGI GALVANI

Luigi Galvani causes frog contractions by lightning rod electricite - LUIGI GALVANI
XEE4161559 Luigi Galvani causes frog contractions by lightning rod electricite - LUIGI GALVANI (1737-1798) Italian physician and physicist

Background imagePhysical Collection: Physics experience in the 18th century: glow produced by an electric machine

Physics experience in the 18th century: glow produced by an electric machine
XEE4134711 Physics experience in the 18th century: glow produced by an electric machine. (From Abbe Nollet). Engraving in " La Nature

Background imagePhysical Collection: Electricite experiment performed by William Watson (1715-1787), English physicist

Electricite experiment performed by William Watson (1715-1787), English physicist
XEE4134546 Electricite experiment performed by William Watson (1715-1787), English physicist, on the banks of the Thames in the 18th century

Background imagePhysical Collection: Florin Perier making experiment of Torricelli at summit of the Puy de Dome, september 19

Florin Perier making experiment of Torricelli at summit of the Puy de Dome, september 19
XEE4163682 Florin Perier making experiment of Torricelli at summit of the Puy de Dome, september 19, 1648 (atmospheric pressure)

Background imagePhysical Collection: Experiences de physique executees par Henri Robin (vers 1803-1874) en l

Experiences de physique executees par Henri Robin (vers 1803-1874) en l
XEE4164758 Experiences de physique executees par Henri Robin (vers 1803-1874) en l honneur des meilleures eleves des Lycees de Paris

Background imagePhysical Collection: William Hyde Wollaston, (1766 - 1828) British physicist

William Hyde Wollaston, (1766 - 1828) British physicist
XEE4164406 William Hyde Wollaston, (1766 - 1828) British physicist and chemist shows the furnace in his laboratory has a visitor

Background imagePhysical Collection: Archimede: he precipitated through the streets shouting 'Eureka, eureka

Archimede: he precipitated through the streets shouting "Eureka, eureka
XEE4164314 Archimede: he precipitated through the streets shouting " Eureka, eureka! " (I found, I found) in " Histoire populaire des sciences

Background imagePhysical Collection: Portrait of the German engineer and physicist Otto von Guericke (1602-1686

Portrait of the German engineer and physicist Otto von Guericke (1602-1686
XEE4146660 Portrait of the German engineer and physicist Otto von Guericke (1602-1686) - Portrait of Otto von Guericke (Otto de Guericke)

Background imagePhysical Collection: Galileo Galilei (1564-1642), Italian scientist, observing the pendulum-like swinging of a

Galileo Galilei (1564-1642), Italian scientist, observing the pendulum-like swinging of a
XEE4147033 Galileo Galilei (1564-1642), Italian scientist, observing the pendulum-like swinging of a lamp in Pisa Cathedral, Italy



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"Exploring the Physical Realm: From Colour Wheels to Proton Collisions and Beyond" Step into the fascinating world of physics, where mysteries are unraveled and secrets of the universe are revealed. 🌌✨ The colour wheel spins, showcasing a spectrum of hues that captivate our senses. Just like light itself, it reminds us that everything around us is made up of different wavelengths. In the depths of particle collisions at CERN's Large Hadron Collider, we witness an extraordinary event - the discovery of the Higgs boson. The ATLAS detector captures this groundbreaking moment, shedding light on fundamental particles and their interactions. Delving deeper into history, we encounter Marie Curie (1867-1934), a trailblazing scientist who revolutionized our understanding of radioactivity. Her pioneering work paved the way for future discoveries in nuclear physics. Richard Feynman appears before us in caricature form - a brilliant physicist known for his contributions to quantum mechanics and his infectious enthusiasm for science. His legacy continues to inspire generations to explore the wonders of nature. Gaze upon Joseph Wright's masterpiece "The Airpump, " depicting an experiment that symbolizes humanity's quest for knowledge through scientific inquiry. It serves as a reminder that curiosity has always driven our exploration phenomena. As night falls, vibrant streaks dance across dark skies - nature's own celestial spectacle known as Northern Lights or Aurora Borealis. This breathtaking phenomenon showcases Earth's interaction with solar winds and magnetic fields. Back at CERN's ATLAS detector, scientists tirelessly search for answers about matter and its origins within our vast Milky Way galaxy. They meticulously study cosmic rays and subatomic particles in pursuit of unlocking profound cosmic truths. Conceptual artwork visualizes the elusive Higgs boson – often referred to as "the God particle. " Its existence confirms theories about mass generation in elementary particles; yet many questions remain unanswered regarding its role in the universe.