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1989 WAEC Physics Theory (a) What is meant by the statement: The linear expansivity of a solid is \(1.0...

Physics
WAEC 1989

(a) What is meant by the statement: The linear expansivity of a solid is \(1.0 \times 10^{-5}K^{-1}\)?

(b)(i) Describe an experiment to determine the linear expansivity of a steel rod. (ii) Steel bars, each of length 3m at 29°C are to be used for constructing a rail line. If the linear expansivity of steel is \(1.0 \times 10^{-5}K^{-1}\), calculate the safety gap that must be left between successive bars if the highest temperature expected is 41°C.

(c) State three advantages and two disadvantages of thermal expansion of solids. 

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Explanation

(a) The statement: The linear expansivity of a solid is \(1.0 \times 10^{-5}K^{-1}\) means that, A unit length of the solid will expand in length by a fraction \(1.0 \times 10^{-5}\) of the original per kelvin rise in temperature.

(Note: \(1.0 \times 10-5 =  \frac{1}{100,000}\), a fraction).

(b) Experiment to determine the linear expansivity of a steel rod.

The apparatus is set up as shown above. The length of the steel rod used is first measured with a meter rule and it is then placed in the jacket with one end fixed. The micrometer screw gauge is turned until the end of the screw just touches the end of the rod, and the gauge reading is noted. It is then turned back enough to make sure that the end of the rod can expand freely. The reading on the thermometer is noted and steam is now passed through the jacket for several minutes. The micrometer is used to note the new reading. More steam is passed again and the reading is taken until a constant reading is obtained. The reading is noted and the temperature is noted from the thermometer. 

The formula \(\alpha = \frac{l_{f} - l_{i}}{l_{i} (\theta_{f} - \theta_{i})}\) is used to determine the linear expansivity.

\(l_{f} - \text{final length} ; l_{i} - \text{initial length} ; \theta_{f} - \text{final temperature} ; \theta_{i} - \text{initial temperature}\)

(b)(ii) \(l = 3m ; \theta_{i} = 29°C ; \theta_{f} = 41°C\)

\(\alpha = 1.0 \times 10^{-5} K^{-1}\)

Safety gap = change in length.

\(\Delta l = \alpha l \Delta \theta\)

= \(1 \times 10^{-5} \times 3.0 \times (41 - 29)\)

= \(36 \times 10^{-5}  = 0.00036m\)

 (c) Advantages:

(1) Used for marking bimetallic strip which is used in thermostat. (2) Removal of tight glass stopper (3) Red-hot rivets in ship building. (4) Expansion of metals is used in bimetallic thermometer.

Disadvantages:

(1) Expansion of metals or concrete bridges. (2) Cracking of glass cup when hot water is poured into the glass cup. (3) Expansion of balance wheel or wrist-watch. (4) Sagging of overhead wire. (5) Expansion of railway lines. 


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WAEC Past Questions, Objective & Theory, Study 100% offline, Download app now - 24709
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC offline past questions - with all answers and explanations in one app - Download for free
WAEC offline past questions - with all answers and explanations in one app - Download for free
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC Past Questions, Objective & Theory, Study 100% offline, Download app now - 24709
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995