
<p> Chapter 7 Worksheet (Practice)</p><p>Formulas and Constants hc E = c = E = h λ 8 -34 -18 c = 2.998 x 10 m/s h = 6.626 x 10 J·s RH = 2.18 x 10 J 1 h E = R 2 λ = H n m</p><p>1. The wavelength of the green light from a traffic signal is centered at 522 nm. What is the frequency of this radiation?</p><p>2. Convert 8.6 x 1013 Hz to nanometers, and 566nm to Hertz.</p><p>3. The blue color of the sky results from the scattering of sunlight by air molecules. The blue light has a frequency of about 7.5 x 1014 Hz.</p><p>(a) Calculate the wavelength in nm associated with this radiation</p><p>(b) Calculate the energy, in joules of a single photon associated wit this frequency. 4. What is the de Broglie wavelength of a 12.4-g hummingbird flying at 1.20 x 102 mph?</p><p>5. Calculate the wavelength (in nanometers) of a photon emitted by a hydrogen atom when its electron drops from the n = 5 to the n = 3 state.</p><p>6. Indicate which of the following sets of quantum numbers are incorrect, and why.</p><p>(a) (1, 0, 1/2, -1/2)</p><p>(b) (3, 0, 0, +1/2)</p><p>(c) (3, 2, 1, 1)</p><p>7. Write the electron configurations for the atom and the ion it forms.</p><p>(a) O</p><p>(b) K</p><p>(c) Fe</p><p>(d) Cl</p><p>(e) N </p>
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