Struct gigakelvin
pub struct gigakelvin;Expand description
gigakelvins
Trait Implementations§
§impl Clone for gigakelvin
impl Clone for gigakelvin
§fn clone(&self) -> gigakelvin
fn clone(&self) -> gigakelvin
Returns a duplicate of the value. Read more
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from
source. Read more§impl Conversion<f32> for gigakelvin
impl Conversion<f32> for gigakelvin
§fn coefficient() -> <gigakelvin as Conversion<f32>>::T
fn coefficient() -> <gigakelvin as Conversion<f32>>::T
Coefficient portion of conversion factor for
converting the given unit. To convert to the base unit for the quantity use
(value + constant()) * coefficient(). To convert from the base unit, (value / coefficient()) - constant() is used. Implementation should return the multiplicative identity
(Self::T::one()) if no coefficient exists.§fn constant(op: ConstantOp) -> <gigakelvin as Conversion<f32>>::T
fn constant(op: ConstantOp) -> <gigakelvin as Conversion<f32>>::T
Constant portion of conversion factor for
converting the given unit. To convert to the base unit for the quantity use
(value + constant()) * coefficient(). To convert from the base unit, (value / coefficient()) - constant() is used. Implementation should return the additive identity (Self::T::zero())
if no constant exists. See [ConstantOp] documentation for details about parameter use to
ensure the method optimizes correctly.§fn conversion(&self) -> Self::Twhere
Self: Sized,
fn conversion(&self) -> Self::Twhere
Self: Sized,
Instance conversion factor. Read more
§impl Conversion<f64> for gigakelvin
impl Conversion<f64> for gigakelvin
§fn coefficient() -> <gigakelvin as Conversion<f64>>::T
fn coefficient() -> <gigakelvin as Conversion<f64>>::T
Coefficient portion of conversion factor for
converting the given unit. To convert to the base unit for the quantity use
(value + constant()) * coefficient(). To convert from the base unit, (value / coefficient()) - constant() is used. Implementation should return the multiplicative identity
(Self::T::one()) if no coefficient exists.§fn constant(op: ConstantOp) -> <gigakelvin as Conversion<f64>>::T
fn constant(op: ConstantOp) -> <gigakelvin as Conversion<f64>>::T
Constant portion of conversion factor for
converting the given unit. To convert to the base unit for the quantity use
(value + constant()) * coefficient(). To convert from the base unit, (value / coefficient()) - constant() is used. Implementation should return the additive identity (Self::T::zero())
if no constant exists. See [ConstantOp] documentation for details about parameter use to
ensure the method optimizes correctly.§fn conversion(&self) -> Self::Twhere
Self: Sized,
fn conversion(&self) -> Self::Twhere
Self: Sized,
Instance conversion factor. Read more
§impl Debug for gigakelvin
impl Debug for gigakelvin
§impl Hash for gigakelvin
impl Hash for gigakelvin
§impl Unit for gigakelvin
impl Unit for gigakelvin
impl Conversion<f32> for gigakelvin
impl Conversion<f64> for gigakelvin
impl Copy for gigakelvin
impl Unit for gigakelvin
Auto Trait Implementations§
impl Freeze for gigakelvin
impl RefUnwindSafe for gigakelvin
impl Send for gigakelvin
impl Sync for gigakelvin
impl Unpin for gigakelvin
impl UnsafeUnpin for gigakelvin
impl UnwindSafe for gigakelvin
Blanket Implementations§
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Mutably borrows from an owned value. Read more
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
§impl<T> Downcast for Twhere
T: Any,
impl<T> Downcast for Twhere
T: Any,
§fn into_any(self: Box<T>) -> Box<dyn Any>
fn into_any(self: Box<T>) -> Box<dyn Any>
Converts
Box<dyn Trait> (where Trait: Downcast) to Box<dyn Any>, which can then be
downcast into Box<dyn ConcreteType> where ConcreteType implements Trait.§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
Converts
Rc<Trait> (where Trait: Downcast) to Rc<Any>, which can then be further
downcast into Rc<ConcreteType> where ConcreteType implements Trait.§fn as_any(&self) -> &(dyn Any + 'static)
fn as_any(&self) -> &(dyn Any + 'static)
Converts
&Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot
generate &Any’s vtable from &Trait’s.§fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
Converts
&mut Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot
generate &mut Any’s vtable from &mut Trait’s.