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Problems related to calculating gas pressures, identifying gas states, and determining gas properties such as molar mass, root-mean-square velocity, and enthalpy of vaporization. It also covers topics like Charles's law and the ideal gas law.
Typology: Exams
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heated to 35'C. What is the new pressure^ of^ the^ gas? a) 4.33 atm b) 168 atm^
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d) 277.1-m/s b) 15.18^ m/s^ ^ w\ e)^ 9.140^ x^ 1,026^ m/s
what is the name for the following^ pr'.r"^ .h.)n?Jih?;^ iffp;"t^ when lr(/)^ )^ lz(s)?
a) b) TN
t is the^ name^ for^ point^ Z^ on^ the^ diagram?
a) The H-F bond in hydrogen^ fluoride^ is^ very strong. -bn Hydrogen^ fluoride^ is^ capable^ of^ forming^ hydrogen^ bonds' "i)' (^) Hydrogen fluoride has very strong London dispersion forces' d) Hydrogen fluoride^ is^ ionic. e) Hydrogen fluoride^ is^ covalent.
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a) lt will conduct electricity. iEX There^ are^ two^ atoms per^ unit^ cell. "O The number of atoms surrounding^ each^ Cu^ atom^ is 12. d) The^ solid^ has a^ cubic closest-packed^ structure. e) The length of a face diagonal is^ four^ times^ the^ Cu^ radius. The metal palladium^ crystallizes in^ a^ face-centered cubic lattice^ with^ an edge^ length of 388' pm. (^) What is the density of palladium? a) 6.01glcm b) o.752 g/cm c) 3.01glcm
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The metal chromium^ crystallizes^ in^ a^ body-centered^ cubic^ lattice.^ lf^ the^ density of chromium^ is^ *-z-"L 7.1_4gfcm3,whatistheunitcelledgelength? iV .: (^) r\ (^) ., "lA?SX,.u 1
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?€., (^) = l.rlrs^;}', , t=q;H:.1;t:r"-* The metal cesium crystallizes in^ a^ body-centered^ cubic^ lattice.^ lf thd density of^ cesium^ is^ 1.88^ --J{" g/r^t, what is the unit cell volume? a) 1.17^ x^108 pm3^ d)^ 4.70^ x^ 1oo^ Pm' b) 2.35^ x^100 pmt^ o (^) - --^ ,*,/ e)^ 1.77^ x^ lo6^ pm -m (^) 2'35x10'Pm' ,""il (^) +
the final temperature be^ in order for^ the^ gas^ to^ have^ a^ final volume of^ 7.5^ L^ at^ 1.00^ atm
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a. 520 mmHg b. 780 mmHg t_c. \ 810 mmHg
Ca(Nog)z(s)+ 2NHacl(s) (^) ---+ 2Nzo(g)+ Cacl2(s)^ +^ 1zo(gi
d. 930 mmHg e. 2800 mmHg
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Which of the following has the lowest doiling point?
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d. 32.0 g/mol e. I47 g/mol I r (^1) 5ir, lin *$_\ "(
The information given^ below^ may^ be^ useful. Many^ other^ relations^ may^ also be derived'
Equations
ldeal gas^ equation;^ PV^ =^ nRT,^ also^ expressed in^ terms of density^ as PM
#;U, #^
(also known as^ Van der Waals^ equation)
Root mean square^ velocity^ of^ a^ gas; u^ =^ (1Y)''' \M )
AH"-f (^) I I) P *[T^ t]
Volume of^ a^ sphere^ =+, Volume of^ a^ cube^ =^ F
The edge length^ of^ the^ cubic^ unit^ cells
l= 2r (for^ a^ simple^ cubic cell)
t (^) = I (for^ a^ body centered^ cubic cell)
I (^) =2t/2r or simply^ 1=^ (t/8)r^ (for^ a^ face^ centered^ cubic^ cell)
Metric and other unit^ conversions
1 m = l-.0x102 cm^1 Kg^ = 1.0^ x103 g
1 m^ =1.0x10e nm^1 KJ^ =^ 1.0^ x103J
i. m (^) =1.0x1012 pm^ l-^ atm=760^ mmHg^ l-^ atm=1'01325x10s^ Pa
R (^) =0.0821 L. atm/(K. mol)
R= 8.3145 J/(K.mol)
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