To the right is a representation of 50 atoms of a fictitious element called westmontium (Wt). The red spheres represent Wt-296, the blue spheres Wt-297, and the green spheres Wt-298. Assuming that the sample is statisti- cally representative of a naturally occurring sample, calculate the per- cent natural abundance of each Wt isotope. Isotope Mass Wt-296 24.6630 x Mass("C) Wt-297 24.7490 x Mass("C) Wt-298 24.8312 x Mass("C)

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To the right is a representation of
50 atoms of a fictitious element called
westmontium (Wt). The red spheres
represent Wt-296, the blue spheres
Wt-297, and the green spheres Wt-298.
Assuming that the sample is statisti-
cally representative of a naturally
occurring sample, calculate the per-
cent natural abundance of each Wt
isotope.
Isotope
Mass
Wt-296
24.6630 x Mass("C)
Wt-297
24.7490 x Mass("C)
Wt-298
24.8312 x Mass("C)
Transcribed Image Text:To the right is a representation of 50 atoms of a fictitious element called westmontium (Wt). The red spheres represent Wt-296, the blue spheres Wt-297, and the green spheres Wt-298. Assuming that the sample is statisti- cally representative of a naturally occurring sample, calculate the per- cent natural abundance of each Wt isotope. Isotope Mass Wt-296 24.6630 x Mass("C) Wt-297 24.7490 x Mass("C) Wt-298 24.8312 x Mass("C)
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