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9.4.2 Test (CST): Computer-Scored Unit Test Questlon 4 of 25 An electromagnetic wave has a frequency of 3.7 xx10^(18)Hz and a speed of 3xx 10^(8)m//s . Use the equation for wavelength to calculate the wavelength of this wave. A. 8.11 xx10^(-11)m B. 8.31 xx10^(12)m C. 1.11 xx10^(27)m D. 4.51 xx10^(-6)m

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9.4.2 Test (CST): Computer-Scored Unit Test Questlon 4 of 25 An electromagnetic wave has a frequency of 3.7 xx10^(18)Hz and a speed of 3xx 10^(8)m//s . Use the equation for wavelength to calculate the wavelength of this wave. A. 8.11 xx10^(-11)m B. 8.31 xx10^(12)m C. 1.11 xx10^(27)m D. 4.51 xx10^(-6)m

9.4.2 Test (CST): Computer-Scored Unit Test Questlon 4 of 25 An electromagnetic wave has a frequency of 3.7 xx10^(18)Hz and a speed of 3xx 10^(8)m//s . Use the equation for wavelength to calculate the wavelength of this wave. A. 8.11 xx10^(-11)m B. 8.31 xx10^(12)m C. 1.11 xx10^(27)m D. 4.51 xx10^(-6)m

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RoryProfessional · Tutor for 6 years

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<p>A</p>

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<p></p><br />1. The formula to determine the wavelength (λ) of an electromagnetic wave is given by:<br />\[ \lambda = \frac{c}{f} \]<br />Where:<br />\[ \lambda \] is the wavelength,<br />\[ c \] is the speed of the electromagnetic wave,<br />\[ f \] is the frequency of the electromagnetic wave.<br /><br />2. Plugging in the given values:<br />\[ \lambda = \frac{3×10^8 m/s}{3.7×10^18 Hz} \]<br />\[ \lambda = 8.11×10^-11 m \]<br /><br />Therefore, the wavelength of the electromagnetic wave is \( 8.11×10^-11 m \), which matches option A.
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