the overall Atomic Mass is 204.37, but for thallium 203 it is 203, and for thallium 205, it is 205.
(203 x 0.30) = 60.9 (205 x 0.70) = 143.5 60.9 + 143.5 = 204.4 The answer is 204.4 amu !
Thallium 203 in my reference is stable. Thallium has many isotopes from Tl184 (11 sec half life) to Tl210 (1.30 min).
205
If centium has three isotopes—centium-200, centium-203, and centium-209—occurring in equal amounts, the average atomic mass can be calculated by averaging the mass numbers of the isotopes. Since they are present in equal proportions, the average atomic mass would be (200 + 203 + 209) / 3 = 204. The average atomic mass of centium would therefore be approximately 204 atomic mass units (amu).
Thallium has several isotopes, with thallium-204 being stable, while thallium-201, which is commonly referenced in decay discussions, has a half-life of about 73 hours. Other isotopes, like thallium-202 and thallium-203, have half-lives of 12.3 days and 46.5 hours, respectively. The decay time varies depending on the specific isotope in question.
(203 x 0.30) = 60.9 (205 x 0.70) = 143.5 60.9 + 143.5 = 204.4 The answer is 204.4 amu !
Thallium 203 in my reference is stable. Thallium has many isotopes from Tl184 (11 sec half life) to Tl210 (1.30 min).
205
Thallium has two stable isotopes: Tl-203 (29.5%) and Tl-205 (70.5%). The percentages represent the relative abundance of each isotope in naturally occurring thallium.
If centium has three isotopes—centium-200, centium-203, and centium-209—occurring in equal amounts, the average atomic mass can be calculated by averaging the mass numbers of the isotopes. Since they are present in equal proportions, the average atomic mass would be (200 + 203 + 209) / 3 = 204. The average atomic mass of centium would therefore be approximately 204 atomic mass units (amu).
Thallium has several isotopes, with thallium-204 being stable, while thallium-201, which is commonly referenced in decay discussions, has a half-life of about 73 hours. Other isotopes, like thallium-202 and thallium-203, have half-lives of 12.3 days and 46.5 hours, respectively. The decay time varies depending on the specific isotope in question.
They are 203 lots of the Imperial unit of mass.
The average atomic mass of the element would be the average of the atomic masses of the three isotopes. Since they occur in equal amounts, the average atomic mass would be the sum of the atomic masses of the three isotopes divided by 3. This average atomic mass is a weighted average, taking into account the relative abundance of each isotope.
203 pounds = 92.0793kg = about 903 newtons.
I'm not sure, but i think it's 32, but don't count on it.
route 203 (mass outbreak).
approximately 203 (203.25 to be exact)