We are given
"\\nu=1.5 \\cdot 10^{3} MHz"
"\\lambda_0=0.225 m"
Define the radiation frequency of a stationary galaxy
"\\nu_0=\\frac{c}{\\lambda_0}=\\frac{3 \\cdot 10^{8}m\/s}{0.225 m}=1.333 \\cdot 10^{3}MHz"
Using the formula for the Doppler effect
"\\nu=\\frac{\\nu_0}{1-\\frac{V_r}{c}}"
then we will find "V_r"
"V_r=\\frac{\\nu-\\nu_0}{\\nu}\\cdot c"
"V_r=\\frac{1.5 \\cdot 10^{3}-1.333 \\cdot 10^{3}}{1.5 \\cdot 10^{3}}\\cdot 3 \\cdot 10^{8}=3.34 \\cdot 10^{7}m\/s=0.111 \\cdot c"
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