Chemistry
7th Edition
ISBN: 9780321940872
Author: John E. McMurry, Robert C. Fay, Jill Kirsten Robinson
Publisher: PEARSON
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Textbook Question
Chapter 11, Problem 11.71SP
Tungsten crystallizes in a body-centered cubic unit cell with an edge length of 317 pm. What is the length in picometers of a unit-cell diagonal that passes through the center atom?
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Chemistry
Ch. 11 - PRACTICE 11.1 The boiling point of ethanol is 78.4...Ch. 11 - APPLY 11.2 Chloroform CHCl3 has Hvap=29.2kJ/mol...Ch. 11 - Prob. 11.3PCh. 11 - APPLY 11.4 What is the sign and magnitude of q...Ch. 11 - Prob. 11.5PCh. 11 - Prob. 11.6ACh. 11 - Prob. 11.7PCh. 11 - Prob. 11.8ACh. 11 - Prob. 11.9PCh. 11 - Prob. 11.10A
Ch. 11 - PRACTICE 11.11 Polonium metal crystallizes in a...Ch. 11 - Prob. 11.12ACh. 11 - Prob. 11.13PCh. 11 - Prob. 11.14ACh. 11 - Conceptual PRACTICE 11.15 Look at the phase...Ch. 11 - Prob. 11.16ACh. 11 - Prob. 11.17PCh. 11 - Prob. 11.18PCh. 11 - Prob. 11.19PCh. 11 - Prob. 11.20PCh. 11 - Prob. 11.21PCh. 11 - Assume that you have a liquid in a cylinder...Ch. 11 - Identify each of the following kinds of packing:Ch. 11 - Prob. 11.24CPCh. 11 - Prob. 11.25CPCh. 11 - Prob. 11.26CPCh. 11 - Prob. 11.27CPCh. 11 - Prob. 11.28SPCh. 11 - Prob. 11.29SPCh. 11 - Prob. 11.30SPCh. 11 - Prob. 11.31SPCh. 11 - Prob. 11.32SPCh. 11 - Prob. 11.33SPCh. 11 - Prob. 11.34SPCh. 11 - Prob. 11.35SPCh. 11 - Prob. 11.36SPCh. 11 - Prob. 11.37SPCh. 11 - Prob. 11.38SPCh. 11 - Prob. 11.39SPCh. 11 - Prob. 11.40SPCh. 11 - Prob. 11.41SPCh. 11 - Prob. 11.42SPCh. 11 - Prob. 11.43SPCh. 11 - Prob. 11.44SPCh. 11 - Prob. 11.45SPCh. 11 - Prob. 11.46SPCh. 11 - Prob. 11.47SPCh. 11 - Prob. 11.48SPCh. 11 - Prob. 11.49SPCh. 11 - Prob. 11.50SPCh. 11 - Prob. 11.51SPCh. 11 - Prob. 11.52SPCh. 11 - Prob. 11.53SPCh. 11 - Prob. 11.54SPCh. 11 - Prob. 11.55SPCh. 11 - Prob. 11.56SPCh. 11 - Prob. 11.57SPCh. 11 - Prob. 11.58SPCh. 11 - Prob. 11.59SPCh. 11 - Prob. 11.60SPCh. 11 - Prob. 11.61SPCh. 11 - Prob. 11.62SPCh. 11 - Prob. 11.63SPCh. 11 - Prob. 11.64SPCh. 11 - Prob. 11.65SPCh. 11 - Prob. 11.66SPCh. 11 - Prob. 11.67SPCh. 11 - Copper crystallizes in a face-centered cubic unit...Ch. 11 - 11.69 Lead crystallizes in a face-centered cubic...Ch. 11 - Aluminum has a density of 2.699 g/cm3 and...Ch. 11 - Tungsten crystallizes in a body-centered cubic...Ch. 11 - Prob. 11.72SPCh. 11 - Prob. 11.73SPCh. 11 - Prob. 11.74SPCh. 11 - Prob. 11.75SPCh. 11 - Prob. 11.76SPCh. 11 - Prob. 11.77SPCh. 11 - Prob. 11.78SPCh. 11 - Prob. 11.79SPCh. 11 - Prob. 11.80SPCh. 11 - Prob. 11.81SPCh. 11 - Prob. 11.82SPCh. 11 - Prob. 11.83SPCh. 11 - Prob. 11.84SPCh. 11 - Prob. 11.85SPCh. 11 - Prob. 11.86SPCh. 11 - Prob. 11.87SPCh. 11 - Prob. 11.88SPCh. 11 - 11.89 Assume that you have samples of the...Ch. 11 - Prob. 11.90SPCh. 11 - Prob. 11.91SPCh. 11 - Prob. 11.92SPCh. 11 - Prob. 11.93SPCh. 11 - Prob. 11.94CPCh. 11 - Prob. 11.95CPCh. 11 - Prob. 11.96CPCh. 11 - Prob. 11.97CPCh. 11 - Prob. 11.98CPCh. 11 - Prob. 11.99CPCh. 11 - Prob. 11.100CPCh. 11 - Prob. 11.101CPCh. 11 - Prob. 11.102CPCh. 11 - Prob. 11.103CPCh. 11 - Prob. 11.104CPCh. 11 - Prob. 11.105CPCh. 11 - Prob. 11.106CPCh. 11 - Prob. 11.107CPCh. 11 - Prob. 11.108CPCh. 11 - Iron crystallizes in a body-centered cubic unit...Ch. 11 - Prob. 11.110CPCh. 11 - Prob. 11.111CPCh. 11 - Prob. 11.112CPCh. 11 - Prob. 11.113CPCh. 11 - Prob. 11.114CPCh. 11 - Prob. 11.115CPCh. 11 - Prob. 11.116MPCh. 11 - Prob. 11.117MPCh. 11 - Prob. 11.118MPCh. 11 - A group 3A metal has a density of 2.70 g/cm3 and a...Ch. 11 - Prob. 11.120MPCh. 11 - Prob. 11.121MP
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Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.Similar questions
- The CsCl structure is a simple cubic array of chloride ions with a cesium ion at the center of each cubic array (see Exercise 69). Given that the density of cesium chloride is 3.97 g/cm3, and assuming that the chloride and cesium ions touch along the body diagonal of the cubic unit cell, calculate the distance between the centers of adjacent Cs+ and Cl ions in the solid. Compare this value with the expected distance based on the sizes of the ions. The ionic radius of Cs+ is 169 pm, and the ionic radius of Cl is 181 pm.arrow_forward• describe the arrangement of atoms in the common cubic crystal lattices and calculate the packing efficiency for a lattice.arrow_forwardThe coordination number of uniformly sized spheres in a cubic closest-packing (FCC) array is 12. Give the coordination number of each atom in (a) a simple cubic lattice. (b) a body-centered cubic lattice.arrow_forward
- A portion of the crystalline lattice for potassium is illustrated below. (a) In what type of unit cell are the K atoms arranged? A portion of the solid-state structure of potassium. (b) If one edge of the potassium unit cell is 533 pm, what is the density of potassium?arrow_forwardWhat is a lattice? What is a unit cell? Describe a simple cubic unit cell. How many net atoms are contained in a simple cubic unit cell? How is the radius of the atom related to the cube edge length for a simple cubic unit cell? Answer the same questions for the body-centered cubic unit cell and for the face-centered unit cell.arrow_forwardWhat is the coordination number in the cesium chloride cubic structure?arrow_forward
- Palladium has a cubic crystal structure in which the edge of the unit cell is 389 pm long. If the density of palladium is 12.02 g/cm3, how many palladium atoms are in a unit cell? In which of the cubic unit cells does palladium crystallize?arrow_forwardThe radius of tungsten is 137 pm and the density is 19.3 g/cm3. Does elemental tungsten have a face-centered cubic structure or a body-centered cubic structure?arrow_forwardThe unit cell of silicon carbide, SiC, is illustrated below. (a) In what type of unit cell are the (dark gray) C atoms arranged? (b) If one edge of the silicon carbide unit cell is 436.0 pm, what is the calculated density of this compound? A portion of the solid-state structure of silicon carbide.arrow_forward
- Calculate the percent of volume that is actually occupied by spheres in a body-centered cubic lattice of identical spheres You can do this by first relating the radius of a sphere, r, to the length of an edge of a unit cell, l. (Note that the spheres do not touch along an edge but do touch along a diagonal passing through the body-centered sphere.) Then calculate the volume of a unit cell in terms of r. The volume occupied by spheres equals the number of spheres per unit cell times the volume of a sphere (4r3/3).arrow_forwardOutline a two-dimensional unit cell for the pattern shown here. If the black squares are labeled A and the white squares are B, what is the simplest formula for a compound based on this pattern?arrow_forwardBarium crystallizes in a body-centered cubic unit cell with an edge length of 3.025 (a) What is the atomic radius of barium in this structure? (b) Calculate the density of barium.arrow_forward
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