Quantity
Available
Represents a physical quantity with a unit (a compound unit prints as a quotient when it has negative exponents); ToString spells the unit out and TextString abbreviates it
Forms Quantity[magnitude, unit]
Quantity[unit]
Verified examples Quantity[3, "Meters"]
→ Quantity[3, Meters] Quantity["Meters"]
→ Quantity[1, Meters] Quantity[60, "Miles"/"Hours"]
→ Quantity[60, Miles/Hours] Quantity[1, "Meters"/"Seconds"^2]
→ Quantity[1, Meters/Seconds^2] Quantity[3, "Meters"] + Quantity[2, "Meters"]
→ Quantity[5, Meters] Quantity[3, "Meters"] + Quantity[2, "Kilometers"]
→ Quantity[2003, Meters] Quantity[3, "Meters"] - Quantity[1, "Meters"]
→ Quantity[2, Meters] 2 * Quantity[3, "Meters"]
→ Quantity[6, Meters] Quantity[3, "Meters"] * Quantity[2, "Seconds"]
→ Quantity[6, Meters*Seconds] Quantity[10, "Meters"] / Quantity[2, "Seconds"]
→ Quantity[5, Meters/Seconds] Quantity[3, "Meters"]^2
→ Quantity[9, Meters^2] UnitConvert[Quantity[1, "Kilometers"], "Meters"]
→ Quantity[1000, Meters] ← QuantilePlot QuantityArray → All 6300 functions ·
Use this from an MCP client