QUESTION IMAGE
Question
first calculate the heat required to increase the temperature of 25.0 g solid ethanol (c₂h₅oh) from -135°c to its melting point temperature of -114°c. (give the answer in j.)
q = j
now calculate the heat required to melt 25.0 g of ethanol at -114°c. (give the answer in kj.)
q = kj
calculate the amount of heat needed to raise the temperature of the 25.0 g liquid ethanol from its melting point of -114°c to 72°c. (give the answer in j.)
q = j
calculate the total heat in kj required to raise the temperature of 25.0 g of solid ethanol at -135.0°c to liquid at 72.0°c. (give the final answer in kj.)
q = kj
Step1: Calculate heat for temperature increase of solid ethanol
The formula for heat \( q = mc\Delta T\). For solid ethanol, \(c = 0.97\space J/g^{\circ}C\), \(m = 25.0\space g\), \(\Delta T=T_{final}-T_{initial}=- 114^{\circ}C-(-135^{\circ}C)=21^{\circ}C\)
Step2: Calculate heat for melting of ethanol
The heat of fusion of ethanol \( \Delta H_{fus}=109\space J/g\). Using \(q = m\Delta H_{fus}\), with \(m = 25.0\space g\)
Step3: Calculate heat for temperature increase of liquid ethanol
For liquid ethanol, \(c = 2.3\space J/g^{\circ}C\), \(m = 25.0\space g\), \(\Delta T=72^{\circ}C-(-114^{\circ}C)=186^{\circ}C\)
Step4: Calculate total heat
First convert \(q_1 = 509.25\space J = 0.50925\space kJ\) and \(q_3 = 10695\space J=10.695\space kJ\)
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\(q_1 = 509\space J\)
\(q_2 = 2.725\space kJ\)
\(q_3 = 10695\space J\)
\(q_{total}=13.9\space kJ\)