Science · Editorial deck
Measures & Constants
The units and constants scientists use to describe reality
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- 01Base units and the SI system5 cards · ~1 min
- 02Energy, force and pressure4 cards · ~1 min
- 03Temperature and fundamental constants7 cards · ~1 min
- 04Angles and astronomical distances4 cards · ~1 min
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01This unit, the metric base unit of length, is now defined by the distance light travels in a set fraction of a second.RECALL
The MetreThe metre, the metric base unit of length, is now defined by the distance light travels in a set fraction of a second.
Share this card ↗Source: Metre ↗02This unit, the metric base unit of mass, is now defined using a fixed value of Planck's constant.RECALL
The KilogramThe kilogram, the metric base unit of mass, is now defined using a fixed value of Planck's constant.
Share this card ↗Source: Kilogram ↗03This SI time unit is defined using a specified frequency of the caesium-133 atom.RECALL
The SecondThe second, the metric base unit of time, is now defined by the precise vibration of a caesium atom.
Share this card ↗Source: Second ↗04This absolute temperature scale begins at absolute zero and uses units without a degree sign.RECALL
The Kelvin ScaleThe Kelvin scale starts at absolute zero and serves as the standard temperature scale across science.
Share this card ↗Source: Kelvin ↗05This unit is the base unit for an amount of substance, defined using Avogadro's number of particles.RECALL
The MoleThe mole is the base unit for an amount of substance, defined using Avogadro's number of particles.
Share this card ↗Source: Mole (unit) ↗06This SI force unit accelerates a one-kilogram mass at one metre per second squared.RECALL
The NewtonThe newton, the metric unit of force, is named in honor of Isaac Newton.
Share this card ↗Source: Newton (unit) ↗07This SI power unit equals one joule per second.RECALL
The WattThe watt, the metric unit of power, is named after the engineer James Watt.
Share this card ↗Source: Watt ↗08This SI energy unit equals the work done by one newton acting through one metre in its direction.RECALL
The JouleThe joule, the metric unit of energy, is named after physicist James Prescott Joule.
Share this card ↗Source: Joule ↗09This SI pressure unit equals one newton per square metre.RECALL
The PascalThe pascal, the metric unit of pressure, is named after mathematician Blaise Pascal.
Share this card ↗Source: Pascal (unit) ↗10This temperature limit is 0 kelvin, exactly −273.15 °C.RECALL
Absolute ZeroShare this card ↗Source: Absolute zero ↗11This number gives the particle count in one mole: approximately 6.022 × 10²³.RECALL
Avogadro's NumberAvogadro's number gives the particle count in one mole of substance, roughly 6.022 times ten to the twenty-third power.
Share this card ↗Source: Avogadro constant ↗12This constant links a photon's energy to its frequency.RECALL
Planck's ConstantPlanck's constant links a photon's energy to its frequency and underlies the foundations of quantum mechanics.
Share this card ↗Source: Planck constant ↗13This universal constant sets gravity's strength in Newton's inverse-square law.RECALL
Gravitational ConstantThe gravitational constant sets the strength of gravity between masses and was first measured by Henry Cavendish.
Share this card ↗Source: Gravitational constant ↗14Water freezes at 32 degrees on this temperature scale, still common in the United States.RECALL
The Fahrenheit ScaleThe Fahrenheit scale, still used in the United States, sets water's freezing point at 32 degrees.
Share this card ↗Source: Fahrenheit ↗15At standard atmospheric pressure, water freezes at 0 and boils at 100 on this temperature scale.RECALL
The Celsius ScaleThe Celsius scale, used across most of the world, sets water's freezing and boiling points at 0 and 100 degrees.
Share this card ↗Source: Celsius ↗16This constant links temperature with particle energy in statistical mechanics.RECALL
Boltzmann ConstantThe Boltzmann constant links temperature to particle energy and is central to the field of statistical mechanics.
Share this card ↗Source: Boltzmann constant ↗17In a vacuum, this speed is approximately 299,792 kilometres per second.RECALL
Speed of LightThe speed of light, about 299,792 kilometers per second in a vacuum, stands as physics' universal speed limit.
Share this card ↗Source: Speed of light ↗18This irrational number equals a Euclidean circle's circumference divided by its diameter.RECALL
PiPi expresses the ratio of a circle's circumference to its diameter and is irrational: its decimal expansion never ends or becomes periodic.
Share this card ↗Source: Pi ↗19This unit measures the distance light travels in a year and is used for vast distances between stars.RECALL
Light-yearA light-year measures the distance light travels in a year and is used for vast distances between stars.
Share this card ↗Source: Light-year ↗20This distance unit, based historically on the mean Earth–Sun distance, is used within the Solar System.RECALL
Astronomical UnitThe astronomical unit, the average Earth-Sun distance, serves as a convenient yardstick within the solar system.
Share this card ↗Source: Astronomical unit ↗
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