#[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))]
#[cfg_attr(feature = "mem_size", derive(mem_dbg::MemSize))]
#[cfg_attr(feature = "mem_dbg", derive(mem_dbg::MemDbg))]
#[cfg_attr(feature = "mem_size", mem_size(flat))]
pub enum TerbiumIsotope {
Tb135,
Tb136,
Tb137,
Tb138,
Tb139,
Tb140,
Tb141,
Tb142,
Tb143,
Tb144,
Tb145,
Tb146,
Tb147,
Tb148,
Tb149,
Tb150,
Tb151,
Tb152,
Tb153,
Tb154,
Tb155,
Tb156,
Tb157,
Tb158,
Tb159,
Tb160,
Tb161,
Tb162,
Tb163,
Tb164,
Tb165,
Tb166,
Tb167,
Tb168,
Tb169,
Tb170,
Tb171,
Tb172,
Tb173,
Tb174,
}
impl super::RelativeAtomicMass for TerbiumIsotope {
#[inline]
fn relative_atomic_mass(&self) -> f64 {
match self {
Self::Tb135 => 134.96476f64,
Self::Tb136 => 135.96129f64,
Self::Tb137 => 136.95602f64,
Self::Tb138 => 137.95312f64,
Self::Tb139 => 138.94833f64,
Self::Tb140 => 139.94581f64,
Self::Tb141 => 140.94145f64,
Self::Tb142 => 141.93928f64,
Self::Tb143 => 142.935137f64,
Self::Tb144 => 143.933045f64,
Self::Tb145 => 144.92882f64,
Self::Tb146 => 145.927253f64,
Self::Tb147 => 146.9240548f64,
Self::Tb148 => 147.924282f64,
Self::Tb149 => 148.9232535f64,
Self::Tb150 => 149.9236649f64,
Self::Tb151 => 150.9231096f64,
Self::Tb152 => 151.924083f64,
Self::Tb153 => 152.9234424f64,
Self::Tb154 => 153.924685f64,
Self::Tb155 => 154.923511f64,
Self::Tb156 => 155.9247552f64,
Self::Tb157 => 156.924033f64,
Self::Tb158 => 157.9254209f64,
Self::Tb159 => 158.9253547f64,
Self::Tb160 => 159.9271756f64,
Self::Tb161 => 160.9275778f64,
Self::Tb162 => 161.929495f64,
Self::Tb163 => 162.9306547f64,
Self::Tb164 => 163.93336f64,
Self::Tb165 => 164.93498f64,
Self::Tb166 => 165.93786f64,
Self::Tb167 => 166.93996f64,
Self::Tb168 => 167.9434f64,
Self::Tb169 => 168.94597f64,
Self::Tb170 => 169.94984f64,
Self::Tb171 => 170.95273f64,
Self::Tb172 => 171.957391f64,
Self::Tb173 => 172.960805f64,
Self::Tb174 => 173.965679f64,
}
}
}
impl super::ElementVariant for TerbiumIsotope {
#[inline]
fn element(&self) -> crate::Element {
crate::Element::Tb
}
}
impl super::MassNumber for TerbiumIsotope {
#[inline]
fn mass_number(&self) -> u16 {
match self {
Self::Tb135 => 135u16,
Self::Tb136 => 136u16,
Self::Tb137 => 137u16,
Self::Tb138 => 138u16,
Self::Tb139 => 139u16,
Self::Tb140 => 140u16,
Self::Tb141 => 141u16,
Self::Tb142 => 142u16,
Self::Tb143 => 143u16,
Self::Tb144 => 144u16,
Self::Tb145 => 145u16,
Self::Tb146 => 146u16,
Self::Tb147 => 147u16,
Self::Tb148 => 148u16,
Self::Tb149 => 149u16,
Self::Tb150 => 150u16,
Self::Tb151 => 151u16,
Self::Tb152 => 152u16,
Self::Tb153 => 153u16,
Self::Tb154 => 154u16,
Self::Tb155 => 155u16,
Self::Tb156 => 156u16,
Self::Tb157 => 157u16,
Self::Tb158 => 158u16,
Self::Tb159 => 159u16,
Self::Tb160 => 160u16,
Self::Tb161 => 161u16,
Self::Tb162 => 162u16,
Self::Tb163 => 163u16,
Self::Tb164 => 164u16,
Self::Tb165 => 165u16,
Self::Tb166 => 166u16,
Self::Tb167 => 167u16,
Self::Tb168 => 168u16,
Self::Tb169 => 169u16,
Self::Tb170 => 170u16,
Self::Tb171 => 171u16,
Self::Tb172 => 172u16,
Self::Tb173 => 173u16,
Self::Tb174 => 174u16,
}
}
}
impl super::IsotopicComposition for TerbiumIsotope {
#[inline]
fn isotopic_composition(&self) -> Option<f64> {
match self {
Self::Tb159 => Some(1f64),
_ => None,
}
}
}
impl super::MostAbundantIsotope for TerbiumIsotope {
fn most_abundant_isotope() -> Self {
Self::Tb159
}
}
impl From<TerbiumIsotope> for crate::Isotope {
fn from(isotope: TerbiumIsotope) -> Self {
crate::Isotope::Tb(isotope)
}
}
impl From<TerbiumIsotope> for crate::Element {
fn from(_isotope: TerbiumIsotope) -> Self {
crate::Element::Tb
}
}
impl TryFrom<u64> for TerbiumIsotope {
type Error = crate::errors::Error;
fn try_from(value: u64) -> Result<Self, Self::Error> {
match value {
135u64 => Ok(Self::Tb135),
136u64 => Ok(Self::Tb136),
137u64 => Ok(Self::Tb137),
138u64 => Ok(Self::Tb138),
139u64 => Ok(Self::Tb139),
140u64 => Ok(Self::Tb140),
141u64 => Ok(Self::Tb141),
142u64 => Ok(Self::Tb142),
143u64 => Ok(Self::Tb143),
144u64 => Ok(Self::Tb144),
145u64 => Ok(Self::Tb145),
146u64 => Ok(Self::Tb146),
147u64 => Ok(Self::Tb147),
148u64 => Ok(Self::Tb148),
149u64 => Ok(Self::Tb149),
150u64 => Ok(Self::Tb150),
151u64 => Ok(Self::Tb151),
152u64 => Ok(Self::Tb152),
153u64 => Ok(Self::Tb153),
154u64 => Ok(Self::Tb154),
155u64 => Ok(Self::Tb155),
156u64 => Ok(Self::Tb156),
157u64 => Ok(Self::Tb157),
158u64 => Ok(Self::Tb158),
159u64 => Ok(Self::Tb159),
160u64 => Ok(Self::Tb160),
161u64 => Ok(Self::Tb161),
162u64 => Ok(Self::Tb162),
163u64 => Ok(Self::Tb163),
164u64 => Ok(Self::Tb164),
165u64 => Ok(Self::Tb165),
166u64 => Ok(Self::Tb166),
167u64 => Ok(Self::Tb167),
168u64 => Ok(Self::Tb168),
169u64 => Ok(Self::Tb169),
170u64 => Ok(Self::Tb170),
171u64 => Ok(Self::Tb171),
172u64 => Ok(Self::Tb172),
173u64 => Ok(Self::Tb173),
174u64 => Ok(Self::Tb174),
_ => Err(crate::errors::Error::Isotope(crate::Element::Tb, value)),
}
}
}
impl TryFrom<u8> for TerbiumIsotope {
type Error = crate::errors::Error;
fn try_from(value: u8) -> Result<Self, Self::Error> {
Self::try_from(u64::from(value))
}
}
impl TryFrom<u16> for TerbiumIsotope {
type Error = crate::errors::Error;
fn try_from(value: u16) -> Result<Self, Self::Error> {
Self::try_from(u64::from(value))
}
}
impl TryFrom<u32> for TerbiumIsotope {
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 TerbiumIsotope {
fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
match self {
Self::Tb135 => write!(f, "Tb135"),
Self::Tb136 => write!(f, "Tb136"),
Self::Tb137 => write!(f, "Tb137"),
Self::Tb138 => write!(f, "Tb138"),
Self::Tb139 => write!(f, "Tb139"),
Self::Tb140 => write!(f, "Tb140"),
Self::Tb141 => write!(f, "Tb141"),
Self::Tb142 => write!(f, "Tb142"),
Self::Tb143 => write!(f, "Tb143"),
Self::Tb144 => write!(f, "Tb144"),
Self::Tb145 => write!(f, "Tb145"),
Self::Tb146 => write!(f, "Tb146"),
Self::Tb147 => write!(f, "Tb147"),
Self::Tb148 => write!(f, "Tb148"),
Self::Tb149 => write!(f, "Tb149"),
Self::Tb150 => write!(f, "Tb150"),
Self::Tb151 => write!(f, "Tb151"),
Self::Tb152 => write!(f, "Tb152"),
Self::Tb153 => write!(f, "Tb153"),
Self::Tb154 => write!(f, "Tb154"),
Self::Tb155 => write!(f, "Tb155"),
Self::Tb156 => write!(f, "Tb156"),
Self::Tb157 => write!(f, "Tb157"),
Self::Tb158 => write!(f, "Tb158"),
Self::Tb159 => write!(f, "Tb159"),
Self::Tb160 => write!(f, "Tb160"),
Self::Tb161 => write!(f, "Tb161"),
Self::Tb162 => write!(f, "Tb162"),
Self::Tb163 => write!(f, "Tb163"),
Self::Tb164 => write!(f, "Tb164"),
Self::Tb165 => write!(f, "Tb165"),
Self::Tb166 => write!(f, "Tb166"),
Self::Tb167 => write!(f, "Tb167"),
Self::Tb168 => write!(f, "Tb168"),
Self::Tb169 => write!(f, "Tb169"),
Self::Tb170 => write!(f, "Tb170"),
Self::Tb171 => write!(f, "Tb171"),
Self::Tb172 => write!(f, "Tb172"),
Self::Tb173 => write!(f, "Tb173"),
Self::Tb174 => write!(f, "Tb174"),
}
}
}
#[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 TerbiumIsotope::iter() {
let mass = isotope.relative_atomic_mass();
assert!(mass > 0.0, "Mass should be positive for {isotope:?}");
}
}
#[test]
fn test_element() {
for isotope in TerbiumIsotope::iter() {
let element = isotope.element();
assert_eq!(element, crate::Element::Tb, "Element should be correct for {isotope:?}");
}
}
#[test]
fn test_mass_number() {
for isotope in TerbiumIsotope::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 TerbiumIsotope::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 = TerbiumIsotope::most_abundant_isotope();
let _ = most_abundant.relative_atomic_mass();
}
#[test]
fn test_from_isotope() {
for isotope in TerbiumIsotope::iter() {
let iso: crate::Isotope = isotope.into();
match iso {
crate::Isotope::Tb(i) => assert_eq!(i, isotope),
_ => panic!("Wrong isotope type"),
}
}
}
#[test]
fn test_from_element() {
for isotope in TerbiumIsotope::iter() {
let elem: crate::Element = isotope.into();
assert_eq!(elem, crate::Element::Tb);
}
}
#[test]
fn test_try_from_mass_number() {
for isotope in TerbiumIsotope::iter() {
let mass = isotope.mass_number();
let iso = TerbiumIsotope::try_from(mass).unwrap();
assert_eq!(iso, isotope);
let iso_u32 = TerbiumIsotope::try_from(u32::from(mass)).unwrap();
assert_eq!(iso_u32, isotope);
if let Ok(mass_u8) = u8::try_from(mass) {
let iso_u8 = TerbiumIsotope::try_from(mass_u8).unwrap();
assert_eq!(iso_u8, isotope);
}
}
assert!(TerbiumIsotope::try_from(0_u16).is_err());
assert!(TerbiumIsotope::try_from(1000_u16).is_err());
assert!(TerbiumIsotope::try_from(0_u32).is_err());
assert!(TerbiumIsotope::try_from(1000_u32).is_err());
assert!(TerbiumIsotope::try_from(0_u8).is_err());
}
#[test]
fn test_display() {
for isotope in TerbiumIsotope::iter() {
let s = alloc::format!("{isotope}");
assert!(!s.is_empty(), "Display should not be empty for {isotope:?}");
}
}
}