SZTUKA
Piękno i dobre samopoczucie
RZEMIOSŁO
KULTURA I HISTORIA
ROZRYWKA
ŚRODOWISKO
JEDZENIE I NAPOJE
INŻYNIERIA ODWROTNA
NAUKI
LEKKOATLETYKA
TECHNOLOGIA
URZĄDZENIA DO NOSZENIA
PlanyNAUKI

NAUKI

Dostępne plany: 1546 • Podkategorie: 11

Plany (1546)

Building a Brass Astrolabe — The Islamic Golden Age Instrument That Mapped the Sky

Building a Brass Astrolabe — The Islamic Golden Age Instrument That Mapped the Sky

autor: AstroIS

Mosiądz

60
0
0
0
7
0
Building a Chinese Armillary Sphere — The Bronze Instrument That Mapped the Heavens

Building a Chinese Armillary Sphere — The Bronze Instrument That Mapped the Heavens

autor: AstroIS

Brązowy

76
0
0
0
3
0
Wytwórz potaż z popiołu drewna

Wytwórz potaż z popiołu drewna

autor: CharlieDE

Chemia

105
0
0
0
0
0
Striking Fire with Flint and Steel — The Iron Age Upgrade to Fire Starting

Striking Fire with Flint and Steel — The Iron Age Upgrade to Fire Starting

autor: ForgeNO

Obróbka metali

47
0
0
0
0
0
Making a Stone Hoe — The First Agricultural Tool

Making a Stone Hoe — The First Agricultural Tool

autor: MaryFI

Prehistoryczny

63
0
0
0
0
0
Making Bakelite — The First Fully Synthetic Plastic That Launched the Age of Polymers
Niebezpieczne

Making Bakelite — The First Fully Synthetic Plastic That Launched the Age of Polymers

autor: CharlieDE

Plastic

54
0
0
0
1
0
Synthesising Aspirin — The Reaction That Founded Modern Pharmaceuticals

Synthesising Aspirin — The Reaction That Founded Modern Pharmaceuticals

autor: CharlieDE

Chemia

54
0
0
0
1
0
Making Celluloid — The First Synthetic Plastic That Changed Everything
Niebezpieczne

Making Celluloid — The First Synthetic Plastic That Changed Everything

autor: CharlieDE

Plastic

80
0
0
0
3
0
Making Nitrocellulose (Guncotton) — The Nitration That Launched Smokeless Powder and Plastics
Niebezpieczne

Making Nitrocellulose (Guncotton) — The Nitration That Launched Smokeless Powder and Plastics

autor: CharlieDE

Plastic

118
0
0
0
2
0
Vulcanizing Rubber with Sulfur — The Accidental Discovery That Put Tyres on the Road

Vulcanizing Rubber with Sulfur — The Accidental Discovery That Put Tyres on the Road

autor: CharlieDE

Chemia

95
0
0
0
3
0
Making Portland Cement from Limestone and Clay — The Material That Built the Modern World

Making Portland Cement from Limestone and Clay — The Material That Built the Modern World

autor: CharlieDE

Chemia

82
0
0
0
4
0
Electrolysis of Water — Splitting the Molecule That Fooled Chemistry for Centuries

Electrolysis of Water — Splitting the Molecule That Fooled Chemistry for Centuries

autor: CharlieDE

Chemia

57
0
0
0
2
0
Making Bleaching Powder — The Chlorine Chemistry That Made White Fabric Affordable
Niebezpieczne

Making Bleaching Powder — The Chlorine Chemistry That Made White Fabric Affordable

autor: CharlieDE

Chemia

45
0
0
0
3
0
Making Soda Ash by the Leblanc Process — The Chemical That Made Soap and Glass Affordable
Niebezpieczne

Making Soda Ash by the Leblanc Process — The Chemical That Made Soap and Glass Affordable

autor: CharlieDE

Chemia

67
0
0
0
3
0
Making Sulfuric Acid by the Lead Chamber Process — The Acid That Built the Industrial Revolution
Niebezpieczne

Making Sulfuric Acid by the Lead Chamber Process — The Acid That Built the Industrial Revolution

autor: CharlieDE

Przemysłowy

68
0
0
0
6
0
Making DPP Red (Pyrrole Red) — The Accidental Ferrari Pigment That Ended the Synthetic Colour Revolution
Niebezpieczne

Making DPP Red (Pyrrole Red) — The Accidental Ferrari Pigment That Ended the Synthetic Colour Revolution

autor: CharlieDE

Chemia

63
0
0
0
3
0
Making Isoindoline Yellow — The High-Performance Pigment That Outlasts Cadmium
Niebezpieczne

Making Isoindoline Yellow — The High-Performance Pigment That Outlasts Cadmium

autor: CharlieDE

Chemia

55
0
0
0
3
0
Making Quinacridone — The Synthetic Organic Pigment That Obsoleted Alizarin Crimson
Niebezpieczne

Making Quinacridone — The Synthetic Organic Pigment That Obsoleted Alizarin Crimson

autor: CharlieDE

Chemia

68
0
0
0
4
0
Making Dioxazine Violet — The Staggeringly Powerful Purple That Replaced Cobalt Violet
Niebezpieczne

Making Dioxazine Violet — The Staggeringly Powerful Purple That Replaced Cobalt Violet

autor: CharlieDE

Chemia

51
0
0
0
3
0
Making Phthalocyanine Green — The Halogenated Phthalo That Replaced Viridian
Niebezpieczne

Making Phthalocyanine Green — The Halogenated Phthalo That Replaced Viridian

autor: CharlieDE

Chemia

54
0
0
0
3
0
Making Phthalocyanine Blue — The Copper Complex That Became the World's Most Used Blue Pigment

Making Phthalocyanine Blue — The Copper Complex That Became the World's Most Used Blue Pigment

autor: CharlieDE

Chemia

53
0
0
0
3
0
Making Hansa Yellow — The Monoazo Pigment in Every Paint Box Since 1910
Niebezpieczne

Making Hansa Yellow — The Monoazo Pigment in Every Paint Box Since 1910

autor: CharlieDE

Chemia

72
1
0
0
4
0
Making Para Red — The First Azo Pigment That Launched Modern Colour Chemistry
Niebezpieczne

Making Para Red — The First Azo Pigment That Launched Modern Colour Chemistry

autor: CharlieDE

Chemia

43
0
0
0
5
0
Making Lithopone — The Co-Precipitated White Pigment of the Industrial Age
Niebezpieczne

Making Lithopone — The Co-Precipitated White Pigment of the Industrial Age

autor: CharlieDE

Przemysłowy

62
0
0
0
2
0
Pokazano 24 z 1546