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bixtya [17]
3 years ago
13

Use the formula F = (9/5)C + 32 to convert 35 degrees Celsius to Fahrenheit. Show your work.

Chemistry
1 answer:
torisob [31]3 years ago
4 0

Answer:

95 °F

Explanation:

F=\frac{9}{5} C + 32 \\  plug \: C = 35  \: in \: above \: equation\\  \\ F=\frac{9}{ \cancel5}  \times \cancel {35 } \:   \purple{\bold{ \: 7}}+ 32 \\F=9 \times 7 + 32 \\ F=63 + 32 \\ F=95

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Titanium has an HCP crystal structure, a c/a ratio of 1.669, an atomic weight of 47.87 g/mol, and a density of 4.51 g/cm3. Compu
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Answer : The atomic radius for Ti is, 1.45\times 10^{-8}cm

Explanation :

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Formula used :  

\rho=\frac{Z\times M}{N_{A}\times V} .............(1)

where,

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Z = number of atom in unit cell (for HCP = 6)

M = atomic mass  = 47.87 g/mole

(N_{A}) = Avogadro's number  

V = volume of HCP crystal structure = ?

Now put all the values in above formula (1), we get

4.51g/cm^3=\frac{6\times (47.87g/mol)}{(6.022\times 10^{23}mol^{-1}) \times V}

V=1.06\times 10^{-22}cm^3

Now we have to calculate the atomic radius for Ti.

Formula used :

V=6R^2c\sqrt{3}

Given:

c/a ratio = 1.669 that means,  c = 1.669 a

Now put (c = 1.669 a) and (a = 2R) in this formula, we get:

V=6R^2\times (1.669a)\sqrt{3}

V=6R^2\times (1.669\times 2R)\sqrt{3}

V=(1.669)\times (12\sqrt{3})R^3

Now put all the given values in this formula, we get:

1.06\times 10^{-22}cm^3=(1.669)\times (12\sqrt{3})R^3

R=1.45\times 10^{-8}cm

Therefore, the atomic radius for Ti is, 1.45\times 10^{-8}cm

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