KUNST
SCHÖNHEIT & WELLNESS
HANDWERK
KULTUR & GESCHICHTE
UNTERHALTUNG
UMFELD
ESSEN & GETRÄNKE
REVERSE ENGINEERING
WISSENSCHAFTEN
SPORT
TECHNOLOGIE
WEARABLES

Napier's Logarithms — Build a Paper Slide Rule and Multiply by Sliding
A hands-on maths project: make a slide rule from two paper strips marked with a logarithmic scale, then multiply numbers just by sliding them -- because logarithms turn multiplication into addition. A Python cell shows the log trick, and a compendium covers 300 years of computing before the calculator.
Anfänger
30 minutes
Anweisungen
1
1
Turning times into plus
Turning times into plus
In 1614 John Napier published logarithms, which turn hard multiplication into easy addition. The slide rule mechanised the trick and did the world's calculating for 300 years. You will build one from paper.
2
2
Make two logarithmic strips
Make two logarithmic strips
Cut two identical strips of card. On each, mark 1 at the left and 10 at the right, but space the numbers so that 2 sits about 30% along, 3 about 48%, 5 about 70% -- these positions are the logarithms. (Mark 1,2,3,...,10 at the log positions; a printed log scale helps.) These uneven marks are the secret.
Materialien für diesen Schritt:
Cardstock Assorted Pack (50 sheets)1 StückBenötigte Werkzeuge:
Steel Ruler (30cm)
Sharp Scissors
Graphite Pencil Set3
3
Multiply by sliding
Multiply by sliding
To multiply, say, 2 by 3: slide the 1 of the top strip to sit above the 2 on the bottom strip. Now look above the 3 on the top strip -- it points at 6 on the bottom. You just multiplied by ADDING two lengths. Try 2 by 4, or 3 by 3. Sliding adds the log-distances, and adding logs multiplies the numbers.
4
4
See the log trick in numbers
See the log trick in numbers
Loading Jupyter Notebook...
Benötigte Werkzeuge:
Desktop Computer
Calculator5
5
Compendium: three centuries of computing
Compendium: three centuries of computing
What your slide rule teaches. (1) A logarithm answers 'what power of 10 gives this number?', and the one law log(a times b) equals log(a) plus log(b) is why sliding (adding lengths) multiplies. (2) Equal MULTIPLES sit at equal DISTANCES on a log scale -- that is why the marks bunch up toward 10. (3) From Kepler's orbits to the Apollo programme, science ran on log tables and slide rules until electronic calculators retired them in the 1970s. (4) Logarithms never left: they measure sound in decibels, acidity in pH, earthquakes on the Richter scale and information in bits.
Materialien
1- Platzhalter
Benötigte Werkzeuge
5- Platzhalter
- Platzhalter
- Platzhalter
- Platzhalter
- Platzhalter
Verwandte Blueprints
Diese Blueprints teilen Wissen — Techniken, Materialien oder Prinzipien
CC0 Gemeinfrei
Dieser Blueprint ist unter CC0 veröffentlicht. Sie dürfen dieses Werk für jeden Zweck frei kopieren, ändern, verbreiten und verwenden, ohne um Erlaubnis zu fragen.
Unterstützen Sie den Maker, indem Sie Produkte über seinen Blueprint kaufen, wo er eine Maker-Provision von Anbietern festgelegt, verdient. Oder erstellen Sie eine neue Iteration dieses Blueprints und verbinden Sie ihn in Ihrem eigenen Blueprint, um Einnahmen zu teilen.

