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Sladkaya [172]
3 years ago
10

Define-Ductility, malleability, sonority, electrical conductivity, thermal conductivity​

Chemistry
2 answers:
dusya [7]3 years ago
4 0
<h2>Answer:</h2>

<h3>Ductility</h3><h3>The property of metals, which makes the metals to be drawn into thin wires is called ductility.</h3><h3>Malleability</h3><h3>The property of metals, which makes the metals to be drawn into thin sheets is called malleability</h3><h3>sonority</h3><h3>Sonority is the property of a metal which produces ringing sound when struck by a hard object.</h3><h3>Electrical conductivity</h3><h3>It is the ability of a material to pass an electric current through it. </h3><h3>Thermal conductivity</h3><h3>Thermal conductivity refers to the amount/speed of heat transmitted through a material. </h3><h3 /><h3>hope it helps</h3><h3>plzz mark as brainliest...</h3>
Elina [12.6K]3 years ago
4 0

Answer:

Ductility is a material shaped that can be changed into like wire, and doesn't break. Malleability means the ability to be shaped or enlarged by hammering or pressuring. Electricial conductivity is how much of electric current something can carry on.

Explanation:

I don't really know bout sonority n thermal conductivity, all I know is that it gotta do with heat n sonority prolly like a sound thingy because it has "so" in the front.

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Nitrogen gas is being withdrawn at the rate of 4.5 g/s from a 0.15-m3 cylinder, initially containing the gas at a pressure of 10
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Answer:

Final temperature = 152.57K,

Pressure = 0.6907 bar.

dT/dt = - 1,151 K/s.

Explanation:

The first thing to do here is to write out the equation for mass balance as given below:

dN/dt = N -------------------------------------------------------------------------------------------(1).

N = P/T, then, substitute the values given in the question into:

d[p/T]/ dt = [- 4.5/28 × 8.314]/0.15 = - 8.9 × 10⁻⁵ bar/K.s.

Thus, there is the need to integrate, Integrate [p/T]f = 10/320 - 8.9 × 10⁻⁵ bar/K.s. ------------------------------------(2).

NB; fT = final temperature, fP = final pressure and iT = initial temperature.

Also, [ fT]³⁰/₈.₃₁₄/ [fP] = [iT]³⁰/₈.₃₁₄/ Pi] = [ 320]³⁰/₈.₃₁₄/ 10.

Therefore, [fT]³⁰/₈.₃₁₄ = 109.52 × 10⁶.

Final temperature=  [fP]³⁰/₈.₃₁₄ × 169.05.

Note that fP/ [fP]³⁰/₈.₃₁₄ × 169.05 = 10/320 - 8.9 × 10⁻⁵.

Therefore, [fP]¹ ⁻ ³⁰/₈.₃₁₄ = 0.7651.

Hence, Final temperature = 152.57K,

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dT/ dt = N[RT]² / Cv . PV.

R = 30 - 8.314 = 21.86 J/mol K.

Then, the rate of change of the gas temperature at this time = dT/dt = - 1,151 K/s.

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3 years ago
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