. A mass spectrometer is being used to separate common oxygen-16 from the much rarer oxygen-18, taken from a sample of old glacial ice. (The relative abundance of these oxygen isotopes is related to climatic temperature at the time the ice was deposited.) 0-26 kg, and The ratio of the masses of these two isotopes is 16 to 18, the mass of oxygen-16 is 2.66.10 m S they are singly charged and travel at 5.2.106 in a 1.2 T magnetic field. What is the separation Ad=2r₂-2r₁ between their paths when they hit a target after traversing a semicircle? Ion source F=qE FE F = qvB FB + Bout 20₁ 212 m₂ Bout

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Δd=            m

. A mass spectrometer is being used to separate common oxygen-16 from the much rarer oxygen-18,
taken from a sample of old glacial ice. (The relative abundance of these oxygen isotopes is related to
climatic temperature at the time the ice was deposited.)
-26
The ratio of the masses of these two isotopes is 16 to 18, the mass of oxygen-16 is 2.66-107 kg, and
they are singly charged and travel at 5.2.106 in a 1.2 T magnetic field. What is the separation
m
S
Ad=2r₂-2r₁ between their paths when they hit a target after traversing a semicircle?
Ion
source
F=qE FE
F = qvB FB
+
Bout
V
20₁
212
m₂
Bout
Transcribed Image Text:. A mass spectrometer is being used to separate common oxygen-16 from the much rarer oxygen-18, taken from a sample of old glacial ice. (The relative abundance of these oxygen isotopes is related to climatic temperature at the time the ice was deposited.) -26 The ratio of the masses of these two isotopes is 16 to 18, the mass of oxygen-16 is 2.66-107 kg, and they are singly charged and travel at 5.2.106 in a 1.2 T magnetic field. What is the separation m S Ad=2r₂-2r₁ between their paths when they hit a target after traversing a semicircle? Ion source F=qE FE F = qvB FB + Bout V 20₁ 212 m₂ Bout
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