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infrared radiation from young stars can pass through the heavy dust clo…

Question

infrared radiation from young stars can pass through the heavy dust clouds surrounding them, allowing astronomers here on earth to study the earliest stages of star formation, before a star begins to emit visible light. suppose an infrared telescope is tuned to detect infrared radiation with a frequency of 6.99thz. calculate the wavelength of the infrared radiation. round your answer to 3 significant digits.

Explanation:

Step1: Convert frequency to Hz

Given frequency \( f = 6.99\ \text{THz}=6.99\times 10^{12}\ \text{Hz}\) (since \(1\ \text{THz} = 10^{12}\ \text{Hz}\)).

Step2: Use the formula \(c=\lambda f\)

The speed of light \(c = 3\times 10^{8}\ \text{m/s}\). Rearranging the formula for wavelength \(\lambda=\frac{c}{f}\).
Substitute \(c = 3\times 10^{8}\ \text{m/s}\) and \(f = 6.99\times 10^{12}\ \text{Hz}\) into the formula:
\(\lambda=\frac{3\times 10^{8}}{6.99\times 10^{12}}\ \text{m}\)

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Step3: Convert meters to micrometers

Since \(1\ \text{m}=10^{6}\ \mu\text{m}\), then \(\lambda = 0.429\times10^{-4}\times10^{6}\ \mu\text{m}\)

$$ LATEXBLOCK1 $$

Answer:

\(42.9\ \mu\text{m}\)