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grigory [225]
3 years ago
14

A 125 g sample of strontium was heated from 0°C to 20°C. It absorbed 750 J of energy. What is the specific heat capacity of iron

?
Chemistry
2 answers:
wolverine [178]3 years ago
5 0

Answer:

Specific heat capacity of iron (C) = 0.3 J/g°C

Explanation:

As we know that

Specific heat capacity of iron (C) =\frac{\delta E}{ [m* \delta T]}

Where \delta E represents the change in the energy

m represents the mass of the sample and

\delta T represents the change in temperature.

Given:

Mass of sample (m) = 125 gram

Change in heat (\delta T ) 20 - 0 = 20

Absorbed energy (\delta E)= 750 J

Substituting the given values in above equation, we get -

Specific heat capacity of iron (C)

= \frac{750}{125*20}

Specific heat capacity of iron (C) = 0.3 J/g°C

aleksandrvk [35]3 years ago
4 0

Answer:

Specific heat capacity of iron (C) = 0.3 J/GK

Explanation:

Given:

Mass of sample (m) = 125 gram

Change in heat (ΔT) = 20°C - 0°C = 20°C

Absorbed energy (ΔE) = 750 J

Find:

Specific heat capacity of iron (C) = ?

Computation:

⇒ Specific heat capacity of iron (C) = ΔE / [mΔT]

⇒ Specific heat capacity of iron (C) = 750 / [125 × 20]

⇒ Specific heat capacity of iron (C) = 750 / [2,500]

⇒ Specific heat capacity of iron (C) = 0.3 J/GK

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C reactivity

Explanation:

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What are the three broad classes of elements
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Which substance will require more energy to heat if all the samples have the same mass? A chart with two columns and nine rows.
Paraphin [41]

Here we have to identify the sample which need more energy to heat the sample 1 degree Celsius.

Among the given elements magnesium will require more energy than the others to heat.

As per the definition of specific heat of a compound, the amount of heat required to increase the temperature of the material 1 degree Celsius is the specific heat of the material.

The given data are-

substance              specific heat

Lead                            0.129

Tin                                0.21

Silver                            0.235

Iron                              0.449

Calcium                        0.647

Granite                         0.803

Aluminium                   0.897

Magnesium                  1.023

From the given data lead, magnesium, iron and aluminium have the specific heat 0.129, 1.023, 0.449 and 0.897 respectively. Thus magnesium will require more energy than the others to heat.

6 0
3 years ago
235
lisov135 [29]

Answer:

Average atomic mass of uranium = 237.97 amu

Explanation:

Given data:

Abundance of U-234 = 0.01%

Abundance of U-235 = 0.71%

Abundance of U-238 = 99.28%

Average atomic mass of uranium = ?

Solution:

Average atomic mass  = (abundance of 1st isotope × its atomic mass) +(abundance of 2nd isotope × its atomic mass) + (abundance of 3rd isotope × its atomic mass)  / 100

Average atomic mass  = (234×0.01)+(235×0.71)+(238+99.28) /100

Average atomic mass =  2.34 + 166.85+23628.64 / 100

Average atomic mass = 23797.83 / 100

Average atomic mass = 237.97 amu.

3 0
3 years ago
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