pub struct InverseTemperature<T: NumLike> {
pub per_K: T,
}Expand description
The inverse of temperature unit type, defined as inverse degrees kelvin in SI units
Fields§
§per_K: TThe value of this Inverse temperature in inverse degrees kelvin
Implementations§
Source§impl<T> InverseTemperature<T>where
T: NumLike,
impl<T> InverseTemperature<T>where
T: NumLike,
Sourcepub fn unit_name() -> &'static str
pub fn unit_name() -> &'static str
Returns the standard unit name of inverse temperature: “inverse degrees kelvin”
Sourcepub fn unit_symbol() -> &'static str
pub fn unit_symbol() -> &'static str
Returns the abbreviated name or symbol of inverse temperature: “1/K” for inverse degrees kelvin
Sourcepub fn from_per_K(per_K: T) -> Self
pub fn from_per_K(per_K: T) -> Self
Returns a new inverse temperature value from the given number of inverse degrees kelvin
§Arguments
per_K- Any number-like type, representing a quantity of inverse degrees kelvin
Trait Implementations§
Source§impl<T: NumLike> Add for &InverseTemperature<T>
Adding two unit values of the same type returns a new unit value of the same type (automatically clones the referenced data for convenient ergonomics)
impl<T: NumLike> Add for &InverseTemperature<T>
Adding two unit values of the same type returns a new unit value of the same type (automatically clones the referenced data for convenient ergonomics)
Source§impl<T: NumLike> Add for InverseTemperature<T>
Adding two unit values of the same type returns a new unit value of the same type
impl<T: NumLike> Add for InverseTemperature<T>
Adding two unit values of the same type returns a new unit value of the same type
Source§impl<T: NumLike> AddAssign for InverseTemperature<T>
Adds the given unit value to this unit value
impl<T: NumLike> AddAssign for InverseTemperature<T>
Adds the given unit value to this unit value
Source§fn add_assign(&mut self, rhs: Self)
fn add_assign(&mut self, rhs: Self)
+= operation. Read moreSource§impl<T: Clone + NumLike> Clone for InverseTemperature<T>
impl<T: Clone + NumLike> Clone for InverseTemperature<T>
Source§fn clone(&self) -> InverseTemperature<T>
fn clone(&self) -> InverseTemperature<T>
1.0.0 (const: unstable) · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moreSource§impl<T> Display for InverseTemperature<T>where
T: NumLike,
impl<T> Display for InverseTemperature<T>where
T: NumLike,
Source§impl<T> Div<&InverseAbsorbedDose<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
impl<T> Div<&InverseAbsorbedDose<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseAbsorbedDose<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
impl<T> Div<&InverseAbsorbedDose<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseDoseEquivalent<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
impl<T> Div<&InverseDoseEquivalent<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseDoseEquivalent<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
impl<T> Div<&InverseDoseEquivalent<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for &InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<&InverseTemperature<T>> for &InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for &InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<&InverseTemperature<T>> for &InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for &f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for &f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for &f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for &f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for &i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for &i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for &i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for &i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<&InverseTemperature<T>> for InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<&InverseTemperature<T>> for InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&InverseTemperature<T>> for i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<&InverseTemperature<T>> for i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<&T> for &InverseTemperature<T>where
T: NumLike,
Dividing a unit value by a scalar value returns a unit value
impl<T> Div<&T> for &InverseTemperature<T>where
T: NumLike,
Dividing a unit value by a scalar value returns a unit value
Source§impl<T> Div<&T> for InverseTemperature<T>where
T: NumLike,
Dividing a unit value by a scalar value returns a unit value
impl<T> Div<&T> for InverseTemperature<T>where
T: NumLike,
Dividing a unit value by a scalar value returns a unit value
Source§impl<T> Div<InverseAbsorbedDose<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
impl<T> Div<InverseAbsorbedDose<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseAbsorbedDose<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
impl<T> Div<InverseAbsorbedDose<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseAbsorbedDose returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseDoseEquivalent<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
impl<T> Div<InverseDoseEquivalent<T>> for &InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseDoseEquivalent<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
impl<T> Div<InverseDoseEquivalent<T>> for InverseTemperature<T>where
T: NumLike,
Dividing a InverseTemperature by a InverseDoseEquivalent returns a value of type SpecificHeatCapacity
Source§type Output = SpecificHeatCapacity<T>
type Output = SpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for &InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<InverseTemperature<T>> for &InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for &InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<InverseTemperature<T>> for &InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for &f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for &f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for &f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for &f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for &i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for &i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for &i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for &i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<InverseTemperature<T>> for InverseAbsorbedDose<T>where
T: NumLike,
Dividing a InverseAbsorbedDose by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
impl<T> Div<InverseTemperature<T>> for InverseDoseEquivalent<T>where
T: NumLike,
Dividing a InverseDoseEquivalent by a InverseTemperature returns a value of type InverseSpecificHeatCapacity
Source§type Output = InverseSpecificHeatCapacity<T>
type Output = InverseSpecificHeatCapacity<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for f32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for f64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for i32
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T> Div<InverseTemperature<T>> for i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
impl<T> Div<InverseTemperature<T>> for i64
Dividing a scalar value by a InverseTemperature unit value returns a value of type Temperature
Source§type Output = Temperature<T>
type Output = Temperature<T>
/ operator.Source§impl<T: NumLike> Div<T> for &InverseTemperature<T>
Dividing a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T: NumLike> Div<T> for &InverseTemperature<T>
Dividing a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§impl<T: NumLike> Div<T> for InverseTemperature<T>
Dividing a unit value by a scalar value returns a unit value
impl<T: NumLike> Div<T> for InverseTemperature<T>
Dividing a unit value by a scalar value returns a unit value
Source§impl<T: NumLike> Div for &InverseTemperature<T>
Dividing a unit value by another of the same type returns a scalar value (automatically clones the referenced data for convenient ergonomics)
impl<T: NumLike> Div for &InverseTemperature<T>
Dividing a unit value by another of the same type returns a scalar value (automatically clones the referenced data for convenient ergonomics)
Source§impl<T: NumLike> Div for InverseTemperature<T>
Dividing a unit value by another of the same type returns a scalar value
impl<T: NumLike> Div for InverseTemperature<T>
Dividing a unit value by another of the same type returns a scalar value
Source§impl<T: NumLike> DivAssign<T> for InverseTemperature<T>
Divides this unit value by a scalar
impl<T: NumLike> DivAssign<T> for InverseTemperature<T>
Divides this unit value by a scalar
Source§fn div_assign(&mut self, rhs: T)
fn div_assign(&mut self, rhs: T)
/= operation. Read moreSource§impl<T> Hash for InverseTemperature<T>
This struct implements the Hash trait if it’s member data type also has the Hash trait
impl<T> Hash for InverseTemperature<T>
This struct implements the Hash trait if it’s member data type also has the Hash trait
Source§impl<T> Mul<&InverseTemperature<T>> for f32
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for f32
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for f64
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for f64
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for i16
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for i16
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for i32
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for i32
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for i64
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for i64
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for i8
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for i8
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for u16
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for u16
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for u32
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for u32
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for u64
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for u64
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&InverseTemperature<T>> for u8
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T> Mul<&InverseTemperature<T>> for u8
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<&T> for &InverseTemperature<T>where
T: NumLike,
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<&T> for &InverseTemperature<T>where
T: NumLike,
Multiplying a unit value by a scalar value returns a unit value
Source§impl<T> Mul<&T> for InverseTemperature<T>where
T: NumLike,
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<&T> for InverseTemperature<T>where
T: NumLike,
Multiplying a unit value by a scalar value returns a unit value
Source§impl<T> Mul<InverseTemperature<T>> for f32
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for f32
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for f64
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for f64
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for i16
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for i16
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for i32
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for i32
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for i64
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for i64
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for i8
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for i8
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for u16
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for u16
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for u32
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for u32
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for u64
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for u64
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T> Mul<InverseTemperature<T>> for u8
Multiplying a unit value by a scalar value returns a unit value
impl<T> Mul<InverseTemperature<T>> for u8
Multiplying a unit value by a scalar value returns a unit value
Source§type Output = InverseTemperature<T>
type Output = InverseTemperature<T>
* operator.Source§impl<T: NumLike> Mul<T> for &InverseTemperature<T>
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
impl<T: NumLike> Mul<T> for &InverseTemperature<T>
Multiplying a unit value by a scalar value returns a unit value (automatically clones the referenced data for convenient ergonomics)
Source§impl<T: NumLike> Mul<T> for InverseTemperature<T>
Multiplying a unit value by a scalar value returns a unit value
impl<T: NumLike> Mul<T> for InverseTemperature<T>
Multiplying a unit value by a scalar value returns a unit value
Source§impl<T: NumLike> MulAssign<T> for InverseTemperature<T>
Multiplies this unit value by a scalar
impl<T: NumLike> MulAssign<T> for InverseTemperature<T>
Multiplies this unit value by a scalar
Source§fn mul_assign(&mut self, rhs: T)
fn mul_assign(&mut self, rhs: T)
*= operation. Read moreSource§impl<T: NumLike> Neg for &InverseTemperature<T>
Flips the sign of this unit value (automatically clones the referenced data for convenient ergonomics)
impl<T: NumLike> Neg for &InverseTemperature<T>
Flips the sign of this unit value (automatically clones the referenced data for convenient ergonomics)
Source§impl<T: NumLike> Neg for InverseTemperature<T>
Flips the sign of this unit value
impl<T: NumLike> Neg for InverseTemperature<T>
Flips the sign of this unit value
Source§impl<T> Ord for InverseTemperature<T>
This struct implements the Ord trait if it’s member data type also has the Ord trait
impl<T> Ord for InverseTemperature<T>
This struct implements the Ord trait if it’s member data type also has the Ord trait
1.21.0 (const: unstable) · Source§fn max(self, other: Self) -> Selfwhere
Self: Sized,
fn max(self, other: Self) -> Selfwhere
Self: Sized,
Source§impl<T> PartialEq for InverseTemperature<T>
This struct implements the PartialEq trait if it’s member data type also has the PartialEq trait
impl<T> PartialEq for InverseTemperature<T>
This struct implements the PartialEq trait if it’s member data type also has the PartialEq trait
Source§impl<T> PartialOrd for InverseTemperature<T>where
T: NumLike + PartialOrd,
This struct implements the PartialOrd trait if it’s member data type also has the PartialOrd trait
impl<T> PartialOrd for InverseTemperature<T>where
T: NumLike + PartialOrd,
This struct implements the PartialOrd trait if it’s member data type also has the PartialOrd trait
Source§impl<T: NumLike> Sub for &InverseTemperature<T>
Subtracting two unit values of the same type returns a new unit value of the same type (automatically clones the referenced data for convenient ergonomics)
impl<T: NumLike> Sub for &InverseTemperature<T>
Subtracting two unit values of the same type returns a new unit value of the same type (automatically clones the referenced data for convenient ergonomics)
Source§impl<T: NumLike> Sub for InverseTemperature<T>
Subtracting two unit values of the same type returns a new unit value of the same type
impl<T: NumLike> Sub for InverseTemperature<T>
Subtracting two unit values of the same type returns a new unit value of the same type
Source§impl<T: NumLike> SubAssign for InverseTemperature<T>
Subtracts the given unit value from this unit value
impl<T: NumLike> SubAssign for InverseTemperature<T>
Subtracts the given unit value from this unit value
Source§fn sub_assign(&mut self, rhs: Self)
fn sub_assign(&mut self, rhs: Self)
-= operation. Read moreimpl<T> Copy for InverseTemperature<T>
This struct implements the Copy marker trait if it’s member data type also has the Copy trait
impl<T> Eq for InverseTemperature<T>
This struct implements the core::cmp::Eq trait if it’s member data type also has the core::cmp::Eq trait