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Math Collection (#4)

Mathematics is the universal language that unravels the mysteries of our world

Background imageMath Collection: absence, arid climate, binary, binary code, cloud, color image, computing, copy space

absence, arid climate, binary, binary code, cloud, color image, computing, copy space
Illuminated binary code in desert

Background imageMath Collection: Little girl teaching maths to circus elephants

Little girl teaching maths to circus elephants
Unusual Friends - little girl teaching maths to circus elephants. 1950s

Background imageMath Collection: Childs slate with pen and toy soldiers on a New Year card

Childs slate with pen and toy soldiers on a New Year card. Date: early 20th century

Background imageMath Collection: Childs slate with pen and scribbles on a New Year card

Childs slate with pen and scribbles on a New Year card. Date: early 20th century

Background imageMath Collection: Childs slate with pen and scribbles on a Christmas card

Childs slate with pen and scribbles on a Christmas card. Date: early 20th century

Background imageMath Collection: Childs slate with pen and baubles on a Christmas card

Childs slate with pen and baubles on a Christmas card. early 20th century

Background imageMath Collection: Roman Villa of Pisoes. Polychrome mosaic with geometric moti

Roman Villa of Pisoes. Polychrome mosaic with geometric moti
Roman Art. Portugal. Roman Villa of Pisoes. 1st to 4th century. Polychrome mosaic decorated with geometric motifs. Detail. Near Beja. El Alentejo

Background imageMath Collection: Juan Perez de Moya (1514-1595)

Juan Perez de Moya (1514-1595). Spanish mathematician. Speculative and practical arithmetic. Title cover. 1675. Madrid. Spain

Background imageMath Collection: Joseph Louis Lagrange, mathematician and astronomer

Joseph Louis Lagrange, mathematician and astronomer
Joseph Louis Lagrange (1736-1813), Italian-French mathematician and astronomer. Date: circa 1790

Background imageMath Collection: Johann Bernouilli, Swiss mathematician

Johann Bernouilli, Swiss mathematician
Johann Bernouilli (1667 - 1748), Swiss mathematician, one of many mathematicians of the Bernouilli family. He is especially known for his contributions to infinitesimal calculus. Date: circa 1710

Background imageMath Collection: Children playing schools

Children playing schools, with a teacher writing sums up on a blackboard. Date: circa 1930s

Background imageMath Collection: BERNOULLI, Johann (1667-1748). Swiss mathematician

BERNOULLI, Johann (1667-1748). Swiss mathematician. Development of infinitesimal calculus. Catenary solution Bernoullis rule. Engraving

Background imageMath Collection: WW2 poster, Elephants know no arithmetic

WW2 poster, Elephants know no arithmetic. Its the little things that count. Attention to detail is vital to all good work. Design by Victor Hicks. Date: 1940s

Background imageMath Collection: Nursery Rhymes -- boy with slate, mice with cheese

Nursery Rhymes -- boy with slate, mice with cheese
Nursery Rhymes -- two illustrations. Above -- a boy sits doing sums on a slate while other boys play football. Below -- mice eating bread, cheese and an apple. Date: early 20th century

Background imageMath Collection: Thomas Harper, Math

Thomas Harper, Math
THOMAS HARPER Arithmetician, concerned less with the abstractions of the higher mathematician, more with the day-to-day activities of the accountant. Date: CIRCA 1765

Background imageMath Collection: Kepler, Johannes (1571-1630) German mathematician and astronomer

Kepler, Johannes (1571-1630) German mathematician and astronomer
Johannes Kepler (1571-1630) German mathematician and astronomer. Considered the founder of modern astronomy. Colored engraving

Background imageMath Collection: Laplace, Pierre Simon de (1749-1827). French mathematician, physicist and astronomer

Laplace, Pierre Simon de (1749-1827). French mathematician, physicist and astronomer
Pierre Simon de Laplace (1749-1827). French mathematician, physicist and astronomer. Colored engraving

Background imageMath Collection: MARYLAND: CLASSROOM, 1940. A teacher explaining decimals to seventh grade students

MARYLAND: CLASSROOM, 1940. A teacher explaining decimals to seventh grade students in a one-room schoolhouse in Saint Marys County, Maryland. Photograph by John Vachon, 1940

Background imageMath Collection: Title page of a math book, print maker: Jacques Bureau

Title page of a math book, print maker: Jacques Bureau

Background imageMath Collection: Symbolic image depicting knowledge, blue head with various written tables mathematical formulas

Symbolic image depicting knowledge, blue head with various written tables mathematical formulas, chemical formulas, excerpts from Platos Allegory of the Cave etc

Background imageMath Collection: ABACUS, 19th CENTURY. Line engraving

ABACUS, 19th CENTURY. Line engraving

Background imageMath Collection: SEWING CLASS, 1909. Working girls learning sewing at the Vocational Hancock School in Boston

SEWING CLASS, 1909. Working girls learning sewing at the Vocational Hancock School in Boston, Massachusetts. Photograph by Lewis Hine, October 1909

Background imageMath Collection: DRESSMAKING CLASS, 1909. Working girls learning dressmaking in a free evening class

DRESSMAKING CLASS, 1909. Working girls learning dressmaking in a free evening class at a vocational school in Boston, Massachusetts. Photograph by Lewis Hine, October 1909

Background imageMath Collection: EMBROIDERY CLASS, 1909. Working girls learning embroidery in a free evening class

EMBROIDERY CLASS, 1909. Working girls learning embroidery in a free evening class at a vocational school in Boston, Massachusetts. Photograph by Lewis Hine, October 1909

Background imageMath Collection: Traffic trails across bridge at dusk, Cincinnati, Ohio, from Devou Park, Covington

Traffic trails across bridge at dusk, Cincinnati, Ohio, from Devou Park, Covington, Kentucky

Background imageMath Collection: Math teacher talking to students in classroom

Math teacher talking to students in classroom

Background imageMath Collection: Geometry equations, artwork C017 / 0793

Geometry equations, artwork C017 / 0793
Geometry equations. Computer artwork showing equations for determining the area and volume of a cylinder and its component shapes

Background imageMath Collection: Cartesian coordinates in 3 dimensions C017 / 6989

Cartesian coordinates in 3 dimensions C017 / 6989
Cartesian coordinates in three dimensions, computer artwork. At centre is the origin (red). This lies at point 0, 0, 0, where the X Y and Z axes meet

Background imageMath Collection: Cartesian coordinates in 3 dimensions C017 / 6998

Cartesian coordinates in 3 dimensions C017 / 6998
Cartesian coordinates in three dimensions, computer artwork. At centre is the origin (red). This lies at point 0, 0, 0, where the X Y and Z axes meet

Background imageMath Collection: Geometry equations, artwork C017 / 0789

Geometry equations, artwork C017 / 0789
Geometry equations. Computer artwork showing equations for determining the area and volume of a cylinder and its component shapes

Background imageMath Collection: Cartesian coordinates in 3 dimensions C017 / 6999

Cartesian coordinates in 3 dimensions C017 / 6999
Cartesian coordinates in three dimensions, computer artwork. At centre is the origin (red). This lies at point 0, 0, 0, where the X Y and Z axes meet

Background imageMath Collection: Geometry equations, artwork C017 / 0791

Geometry equations, artwork C017 / 0791
Geometry equations. Computer artwork showing equations for determining the area and volume of a cylinder and its component shapes

Background imageMath Collection: Torus, artwork F006 / 3582

Torus, artwork F006 / 3582
Torus. Computer artwork of a torus. A torus is a mathematical surface with the shape of a doughnut

Background imageMath Collection: Torus, artwork F006 / 3587

Torus, artwork F006 / 3587
Torus. Computer artwork of a torus. A torus is a mathematical surface with the shape of a doughnut

Background imageMath Collection: Torus, artwork F006 / 3588

Torus, artwork F006 / 3588
Torus. Computer artwork of a torus. A torus is a mathematical surface with the shape of a doughnut

Background imageMath Collection: Johann Sebastian Bach (1685-1750)

Johann Sebastian Bach (1685-1750)
Born in Eisenbach, Germany, he was considered in his lifetime a virtuoso instrumentalist of the organ, violin and harpsichord who also composed sacred organ and choral music

Background imageMath Collection: Geometry equations, artwork C017 / 0790

Geometry equations, artwork C017 / 0790
Geometry equations. Computer artwork showing equations for determining the area and volume of a cylinder and its component shapes

Background imageMath Collection: Geometry equations, artwork C017 / 0797

Geometry equations, artwork C017 / 0797
Geometry equations. Computer artwork showing equations for determining the area and volume of a cone and its component shapes

Background imageMath Collection: Geometry equations, artwork C017 / 0796

Geometry equations, artwork C017 / 0796
Geometry equations. Computer artwork showing equations for determining the area and volume of a cone and its component shapes

Background imageMath Collection: Geometry equations, artwork C017 / 0819

Geometry equations, artwork C017 / 0819
Geometry equations. Computer artwork showing equations for determining the area and volume of a sphere and its component shape

Background imageMath Collection: Geometry equations, artwork C017 / 0818

Geometry equations, artwork C017 / 0818
Geometry equations. Computer artwork showing equations for determining the area and volume of a sphere and its component shape

Background imageMath Collection: Geometry equations, artwork C017 / 0792

Geometry equations, artwork C017 / 0792
Geometry equations. Computer artwork showing equations for determining the area and volume of a cylinder and its component shapes

Background imageMath Collection: Geometry equations, artwork C017 / 0794

Geometry equations, artwork C017 / 0794
Geometry equations. Computer artwork showing equations for determining the area and volume of a cylinder and its component shapes

Background imageMath Collection: Solid of revolution, artwork C016 / 8876

Solid of revolution, artwork C016 / 8876
Solid of revolution, computer artwork. A solid of revolution is a solid form (yellow) made by rotating an area bounded by a curve (red) around an axis (here it is the x axis)

Background imageMath Collection: Solid of revolution, artwork C016 / 8881

Solid of revolution, artwork C016 / 8881
Solid of revolution, computer artwork. A solid of revolution is a solid form (grey) made by rotating an area bounded by a curve around an axis that lies on the same plane

Background imageMath Collection: Solid of revolution, artwork C016 / 8882

Solid of revolution, artwork C016 / 8882
Solid of revolution, computer artwork. A solid of revolution is a solid form (yellow) made by rotating an area bounded by a curve (red) around an axis (here it it the x axis)

Background imageMath Collection: Solid of revolution, artwork C016 / 8877

Solid of revolution, artwork C016 / 8877
Solid of revolution, computer artwork. A solid of revolution is a solid form (yellow) made by rotating an area bounded by a curve (red) around an axis (here it is the y axis)

Background imageMath Collection: Solid of revolution, artwork C016 / 8878

Solid of revolution, artwork C016 / 8878
Solid of revolution, computer artwork. A solid of revolution is a solid form (yellow) made by rotating an area bounded by a curve (red) around an axis (here it it the y axis)



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Mathematics is the universal language that unravels the mysteries of our world, from particle physics equations to deciphering the Enigma code machine and has been a driving force behind countless scientific breakthroughs and technological advancements throughout history. From Sir Isaac Newton, the brilliant English mathematician who laid the foundations of calculus and laws of motion, to Leonhard Euler, the Swiss mathematician whose contributions spanned multiple branches of mathematics, these luminaries have shaped our understanding of numbers. Gottfried von Leibniz, a German mathematician and philosopher, introduced us to binary code - paving the way for modern computing. Archimedes, an ancient Greek mathematician and inventor, revolutionized geometry with his discoveries in calculating areas and volumes. Rene Descartes, a French mathematician and philosopher known as "the father of modern philosophy, " developed analytical geometry which merged algebra with geometry. From Particle physics equations that unlock secrets hidden within atoms to complex mathematical models like PSCI2A-00011 or PSCI2A-00029 that help us comprehend intricate phenomena in nature; math permeates every aspect of our lives. It challenges us to think critically and problem solve while providing a framework for logical reasoning. So let's celebrate this beautiful discipline that connects minds across time and space. Whether you're solving equations like Sir Isaac Newton or exploring new frontiers like those encoded by PSCI2A-00045 – embrace math's elegance as it guides us towards deeper understanding in an ever-evolving world.