QUESTION IMAGE
Question
part a
on a mission to a newly discovered planet, an astronaut finds copper abundances of 69.15% for ^63cu and 30.85% for ^65cu. what is the atomic mass of copper for this location?
the mass of ^63cu is 62.9300 amu. the mass of ^65cu is 64.9200 amu.
express your answer to two decimal places, and include the appropriate units.
part b
the astronaut then measures the abundance of strontium on the new planet, obtaining the following results:
what is the atomic mass of strontium for this planet?
express your answer to two decimal places, and include the appropriate units.
Part A
Step1: Calculate the contribution of \(^{63}\text{Cu}\)
The contribution of \(^{63}\text{Cu}\) is calculated by multiplying its mass by its abundance.
Step2: Calculate the contribution of \(^{65}\text{Cu}\)
The contribution of \(^{65}\text{Cu}\) is calculated by multiplying its mass by its abundance.
Step3: Find the atomic mass of copper
Add the contributions of \(^{63}\text{Cu}\) and \(^{65}\text{Cu}\)
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\(63.55\) amu
Part B
Step1: Calculate the contribution of \(^{86}\text{Sr}\)
The contribution of \(^{86}\text{Sr}\) is calculated by multiplying its mass by its abundance.
Step2: Calculate the contribution of \(^{87}\text{Sr}\)
The contribution of \(^{87}\text{Sr}\) is calculated by multiplying its mass by its abundance.
Step3: Calculate the contribution of \(^{88}\text{Sr}\)
The contribution of \(^{88}\text{Sr}\) is calculated by multiplying its mass by its abundance.
Step4: Find the atomic mass of strontium
Add the contributions of \(^{86}\text{Sr}\), \(^{87}\text{Sr}\) and \(^{88}\text{Sr}\)