use crate::PhysicsError;
use deep_causality_num::{FromPrimitive, RealField};
#[derive(Debug, Clone, Copy, PartialEq, PartialOrd)]
pub struct Energy<R: RealField>(R);
const JOULES_PER_EV: f64 = 1.602_176_634e-19;
const JOULES_PER_CALORIE: f64 = 4.184;
const JOULES_PER_KWH: f64 = 3.6e6;
impl<R: RealField> Default for Energy<R> {
fn default() -> Self {
Self(R::zero())
}
}
impl<R: RealField> Energy<R> {
pub fn new(val: R) -> Result<Self, PhysicsError> {
Ok(Self(val))
}
pub fn new_unchecked(val: R) -> Self {
Self(val)
}
pub fn value(&self) -> R {
self.0
}
}
impl<R: RealField + FromPrimitive> Energy<R> {
pub fn from_electron_volts(ev: R) -> Result<Self, PhysicsError> {
let k = R::from_f64(JOULES_PER_EV).ok_or_else(|| {
PhysicsError::NumericalInstability("R::from_f64(JOULES_PER_EV) failed".into())
})?;
Self::new(ev * k)
}
pub fn from_calories(cal: R) -> Result<Self, PhysicsError> {
let k = R::from_f64(JOULES_PER_CALORIE).ok_or_else(|| {
PhysicsError::NumericalInstability("R::from_f64(JOULES_PER_CALORIE) failed".into())
})?;
Self::new(cal * k)
}
pub fn from_kilowatt_hours(kwh: R) -> Result<Self, PhysicsError> {
let k = R::from_f64(JOULES_PER_KWH).ok_or_else(|| {
PhysicsError::NumericalInstability("R::from_f64(JOULES_PER_KWH) failed".into())
})?;
Self::new(kwh * k)
}
pub fn as_electron_volts(&self) -> R {
let k = R::from_f64(JOULES_PER_EV).expect("R::from_f64(JOULES_PER_EV) failed");
self.0 / k
}
pub fn as_calories(&self) -> R {
let k = R::from_f64(JOULES_PER_CALORIE).expect("R::from_f64(JOULES_PER_CALORIE) failed");
self.0 / k
}
pub fn as_kilowatt_hours(&self) -> R {
let k = R::from_f64(JOULES_PER_KWH).expect("R::from_f64(JOULES_PER_KWH) failed");
self.0 / k
}
}
impl<R: RealField + Into<f64>> From<Energy<R>> for f64 {
fn from(val: Energy<R>) -> Self {
val.0.into()
}
}