#[derive(Debug, Clone, Copy, PartialEq, Eq, Hash, PartialOrd, Ord, strum :: EnumIter)]
#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
#[cfg_attr(feature = "arbitrary", derive(arbitrary::Arbitrary))]
pub enum RadonIsotope {
Rn193,
Rn194,
Rn195,
Rn196,
Rn197,
Rn198,
Rn199,
Rn200,
Rn201,
Rn202,
Rn203,
Rn204,
Rn205,
Rn206,
Rn207,
Rn208,
Rn209,
Rn210,
Rn211,
Rn212,
Rn213,
Rn214,
Rn215,
Rn216,
Rn217,
Rn218,
Rn219,
Rn220,
Rn221,
Rn222,
Rn223,
Rn224,
Rn225,
Rn226,
Rn227,
Rn228,
Rn229,
Rn230,
Rn231,
}
impl super::RelativeAtomicMass for RadonIsotope {
#[inline]
fn relative_atomic_mass(&self) -> f64 {
match self {
Self::Rn193 => 193.009708f64,
Self::Rn194 => 194.006144f64,
Self::Rn195 => 195.005422f64,
Self::Rn196 => 196.002116f64,
Self::Rn197 => 197.001585f64,
Self::Rn198 => 197.998679f64,
Self::Rn199 => 198.99839f64,
Self::Rn200 => 199.99569f64,
Self::Rn201 => 200.995628f64,
Self::Rn202 => 201.993264f64,
Self::Rn203 => 202.993388f64,
Self::Rn204 => 203.99143f64,
Self::Rn205 => 204.991719f64,
Self::Rn206 => 205.990214f64,
Self::Rn207 => 206.9907303f64,
Self::Rn208 => 207.989635f64,
Self::Rn209 => 208.990415f64,
Self::Rn210 => 209.9896891f64,
Self::Rn211 => 210.9906011f64,
Self::Rn212 => 211.9907039f64,
Self::Rn213 => 212.9938831f64,
Self::Rn214 => 213.995363f64,
Self::Rn215 => 214.9987459f64,
Self::Rn216 => 216.0002719f64,
Self::Rn217 => 217.003928f64,
Self::Rn218 => 218.0056016f64,
Self::Rn219 => 219.0094804f64,
Self::Rn220 => 220.0113941f64,
Self::Rn221 => 221.0155371f64,
Self::Rn222 => 222.0175782f64,
Self::Rn223 => 223.0218893f64,
Self::Rn224 => 224.024096f64,
Self::Rn225 => 225.028486f64,
Self::Rn226 => 226.030861f64,
Self::Rn227 => 227.035304f64,
Self::Rn228 => 228.037835f64,
Self::Rn229 => 229.042257f64,
Self::Rn230 => 230.04514f64,
Self::Rn231 => 231.04987f64,
}
}
}
impl super::ElementVariant for RadonIsotope {
#[inline]
fn element(&self) -> crate::Element {
crate::Element::Rn
}
}
impl super::MassNumber for RadonIsotope {
#[inline]
fn mass_number(&self) -> u16 {
match self {
Self::Rn193 => 193u16,
Self::Rn194 => 194u16,
Self::Rn195 => 195u16,
Self::Rn196 => 196u16,
Self::Rn197 => 197u16,
Self::Rn198 => 198u16,
Self::Rn199 => 199u16,
Self::Rn200 => 200u16,
Self::Rn201 => 201u16,
Self::Rn202 => 202u16,
Self::Rn203 => 203u16,
Self::Rn204 => 204u16,
Self::Rn205 => 205u16,
Self::Rn206 => 206u16,
Self::Rn207 => 207u16,
Self::Rn208 => 208u16,
Self::Rn209 => 209u16,
Self::Rn210 => 210u16,
Self::Rn211 => 211u16,
Self::Rn212 => 212u16,
Self::Rn213 => 213u16,
Self::Rn214 => 214u16,
Self::Rn215 => 215u16,
Self::Rn216 => 216u16,
Self::Rn217 => 217u16,
Self::Rn218 => 218u16,
Self::Rn219 => 219u16,
Self::Rn220 => 220u16,
Self::Rn221 => 221u16,
Self::Rn222 => 222u16,
Self::Rn223 => 223u16,
Self::Rn224 => 224u16,
Self::Rn225 => 225u16,
Self::Rn226 => 226u16,
Self::Rn227 => 227u16,
Self::Rn228 => 228u16,
Self::Rn229 => 229u16,
Self::Rn230 => 230u16,
Self::Rn231 => 231u16,
}
}
}
impl super::IsotopicComposition for RadonIsotope {
#[inline]
fn isotopic_composition(&self) -> Option<f64> {
None
}
}
impl super::MostAbundantIsotope for RadonIsotope {
fn most_abundant_isotope() -> Self {
Self::Rn231
}
}
impl From<RadonIsotope> for crate::Isotope {
fn from(isotope: RadonIsotope) -> Self {
crate::Isotope::Rn(isotope)
}
}
impl From<RadonIsotope> for crate::Element {
fn from(_isotope: RadonIsotope) -> Self {
crate::Element::Rn
}
}
impl TryFrom<u64> for RadonIsotope {
type Error = crate::errors::Error;
fn try_from(value: u64) -> Result<Self, Self::Error> {
match value {
193u64 => Ok(Self::Rn193),
194u64 => Ok(Self::Rn194),
195u64 => Ok(Self::Rn195),
196u64 => Ok(Self::Rn196),
197u64 => Ok(Self::Rn197),
198u64 => Ok(Self::Rn198),
199u64 => Ok(Self::Rn199),
200u64 => Ok(Self::Rn200),
201u64 => Ok(Self::Rn201),
202u64 => Ok(Self::Rn202),
203u64 => Ok(Self::Rn203),
204u64 => Ok(Self::Rn204),
205u64 => Ok(Self::Rn205),
206u64 => Ok(Self::Rn206),
207u64 => Ok(Self::Rn207),
208u64 => Ok(Self::Rn208),
209u64 => Ok(Self::Rn209),
210u64 => Ok(Self::Rn210),
211u64 => Ok(Self::Rn211),
212u64 => Ok(Self::Rn212),
213u64 => Ok(Self::Rn213),
214u64 => Ok(Self::Rn214),
215u64 => Ok(Self::Rn215),
216u64 => Ok(Self::Rn216),
217u64 => Ok(Self::Rn217),
218u64 => Ok(Self::Rn218),
219u64 => Ok(Self::Rn219),
220u64 => Ok(Self::Rn220),
221u64 => Ok(Self::Rn221),
222u64 => Ok(Self::Rn222),
223u64 => Ok(Self::Rn223),
224u64 => Ok(Self::Rn224),
225u64 => Ok(Self::Rn225),
226u64 => Ok(Self::Rn226),
227u64 => Ok(Self::Rn227),
228u64 => Ok(Self::Rn228),
229u64 => Ok(Self::Rn229),
230u64 => Ok(Self::Rn230),
231u64 => Ok(Self::Rn231),
_ => Err(crate::errors::Error::Isotope(crate::Element::Rn, value)),
}
}
}
impl TryFrom<u8> for RadonIsotope {
type Error = crate::errors::Error;
fn try_from(value: u8) -> Result<Self, Self::Error> {
Self::try_from(u64::from(value))
}
}
impl TryFrom<u16> for RadonIsotope {
type Error = crate::errors::Error;
fn try_from(value: u16) -> Result<Self, Self::Error> {
Self::try_from(u64::from(value))
}
}
impl TryFrom<u32> for RadonIsotope {
type Error = crate::errors::Error;
fn try_from(value: u32) -> Result<Self, Self::Error> {
Self::try_from(u64::from(value))
}
}
impl core::fmt::Display for RadonIsotope {
fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
match self {
Self::Rn193 => write!(f, "Rn193"),
Self::Rn194 => write!(f, "Rn194"),
Self::Rn195 => write!(f, "Rn195"),
Self::Rn196 => write!(f, "Rn196"),
Self::Rn197 => write!(f, "Rn197"),
Self::Rn198 => write!(f, "Rn198"),
Self::Rn199 => write!(f, "Rn199"),
Self::Rn200 => write!(f, "Rn200"),
Self::Rn201 => write!(f, "Rn201"),
Self::Rn202 => write!(f, "Rn202"),
Self::Rn203 => write!(f, "Rn203"),
Self::Rn204 => write!(f, "Rn204"),
Self::Rn205 => write!(f, "Rn205"),
Self::Rn206 => write!(f, "Rn206"),
Self::Rn207 => write!(f, "Rn207"),
Self::Rn208 => write!(f, "Rn208"),
Self::Rn209 => write!(f, "Rn209"),
Self::Rn210 => write!(f, "Rn210"),
Self::Rn211 => write!(f, "Rn211"),
Self::Rn212 => write!(f, "Rn212"),
Self::Rn213 => write!(f, "Rn213"),
Self::Rn214 => write!(f, "Rn214"),
Self::Rn215 => write!(f, "Rn215"),
Self::Rn216 => write!(f, "Rn216"),
Self::Rn217 => write!(f, "Rn217"),
Self::Rn218 => write!(f, "Rn218"),
Self::Rn219 => write!(f, "Rn219"),
Self::Rn220 => write!(f, "Rn220"),
Self::Rn221 => write!(f, "Rn221"),
Self::Rn222 => write!(f, "Rn222"),
Self::Rn223 => write!(f, "Rn223"),
Self::Rn224 => write!(f, "Rn224"),
Self::Rn225 => write!(f, "Rn225"),
Self::Rn226 => write!(f, "Rn226"),
Self::Rn227 => write!(f, "Rn227"),
Self::Rn228 => write!(f, "Rn228"),
Self::Rn229 => write!(f, "Rn229"),
Self::Rn230 => write!(f, "Rn230"),
Self::Rn231 => write!(f, "Rn231"),
}
}
}
#[cfg(test)]
mod tests {
use strum::IntoEnumIterator;
use super::*;
use crate::isotopes::{
ElementVariant, IsotopicComposition, MassNumber, MostAbundantIsotope, RelativeAtomicMass,
};
#[test]
fn test_relative_atomic_mass() {
for isotope in RadonIsotope::iter() {
let mass = isotope.relative_atomic_mass();
assert!(mass > 0.0, "Mass should be positive for {isotope:?}");
}
}
#[test]
fn test_element() {
for isotope in RadonIsotope::iter() {
let element = isotope.element();
assert_eq!(element, crate::Element::Rn, "Element should be correct for {isotope:?}");
}
}
#[test]
fn test_mass_number() {
for isotope in RadonIsotope::iter() {
let mass_number = isotope.mass_number();
assert!(
mass_number > 0 && mass_number < 300,
"Mass number should be reasonable for {isotope:?}"
);
}
}
#[test]
fn test_isotopic_composition() {
for isotope in RadonIsotope::iter() {
let comp = isotope.isotopic_composition();
if let Some(c) = comp {
assert!(
(0.0..=1.0).contains(&c),
"Composition should be between 0 and 1 for {isotope:?}"
);
}
}
}
#[test]
fn test_most_abundant() {
let most_abundant = RadonIsotope::most_abundant_isotope();
let _ = most_abundant.relative_atomic_mass();
}
#[test]
fn test_from_isotope() {
for isotope in RadonIsotope::iter() {
let iso: crate::Isotope = isotope.into();
match iso {
crate::Isotope::Rn(i) => assert_eq!(i, isotope),
_ => panic!("Wrong isotope type"),
}
}
}
#[test]
fn test_from_element() {
for isotope in RadonIsotope::iter() {
let elem: crate::Element = isotope.into();
assert_eq!(elem, crate::Element::Rn);
}
}
#[test]
fn test_try_from_mass_number() {
for isotope in RadonIsotope::iter() {
let mass = isotope.mass_number();
let iso = RadonIsotope::try_from(mass).unwrap();
assert_eq!(iso, isotope);
let iso_u32 = RadonIsotope::try_from(u32::from(mass)).unwrap();
assert_eq!(iso_u32, isotope);
if let Ok(mass_u8) = u8::try_from(mass) {
let iso_u8 = RadonIsotope::try_from(mass_u8).unwrap();
assert_eq!(iso_u8, isotope);
}
}
assert!(RadonIsotope::try_from(0_u16).is_err());
assert!(RadonIsotope::try_from(1000_u16).is_err());
assert!(RadonIsotope::try_from(0_u32).is_err());
assert!(RadonIsotope::try_from(1000_u32).is_err());
assert!(RadonIsotope::try_from(0_u8).is_err());
}
#[test]
fn test_display() {
for isotope in RadonIsotope::iter() {
let s = alloc::format!("{isotope}");
assert!(!s.is_empty(), "Display should not be empty for {isotope:?}");
}
}
}