One mole of uranium (6x1023 atoms) has a mass of 238 grams, as shown in the periodic table on the inside front cover of the textbook. The density of uranium is 18.68 grams/cm. what is the approximate diameter of a uranium atom (length of a bond) in a solid block of the material? Make the simplifying assumption that the atoms are arranged in a "cubic" array, as shown in the figure. Remember to convert to SI units. Additional Materials

Mathematics For Machine Technology
8th Edition
ISBN:9781337798310
Author:Peterson, John.
Publisher:Peterson, John.
Chapter65: Achievement Review—section Six
Section: Chapter Questions
Problem 41AR: Solve these prism and cylinder exercises. Where necessary, round the answers to 2 decimal places...
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One mole of uranium (6x1023 atoms) has a mass of 238 grams, as shown in the periodic table on the inside front cover of the textbook. The density of uranium is 18.68
grams/cm3. What is the approximate diameter of a uranium atom (length of a bond) in a solid block of the material? Make the simplifying assumption that the atoms are arranged
in a "cubic" array, as shown in the figure. Remember to convert to SI units.
d
d
d =
Additional Materials
Transcribed Image Text:One mole of uranium (6x1023 atoms) has a mass of 238 grams, as shown in the periodic table on the inside front cover of the textbook. The density of uranium is 18.68 grams/cm3. What is the approximate diameter of a uranium atom (length of a bond) in a solid block of the material? Make the simplifying assumption that the atoms are arranged in a "cubic" array, as shown in the figure. Remember to convert to SI units. d d d = Additional Materials
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