10. D.C. circuits
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10.1 Practical circuits
10.1.1The circuit symbols shown in section 6 of this syllabus
• recall and use the circuit symbols shown in section 6 of this syllabus
10.1.2Draw and interpret circuit diagrams containing the circuit symbols shown in
• draw and interpret circuit diagrams containing the circuit symbols shown in section 6 of this syllabus
10.1.3The electromotive force (e.m.f.) of a source as energy transferred per unit
• define and use the electromotive force (e.m.f.) of a source as energy transferred per unit charge in driving charge around a complete circuit
10.1.4E.m.f. and potential difference (p.d.) in terms of energy considerations
• distinguish between e.m.f. and potential difference (p.d.) in terms of energy considerations
10.1.5The effects of the internal resistance of a source of e.m.f. on the terminal
• understand the effects of the internal resistance of a source of e.m.f. on the terminal potential difference
10.2 Kirchhoff’s laws
10.2.1Kirchhoff’s first law and understand that it is a consequence of
• recall Kirchhoff’s first law and understand that it is a consequence of conservation of charge
10.2.2Kirchhoff’s second law and understand that it is a consequence of
• recall Kirchhoff’s second law and understand that it is a consequence of conservation of energy
10.2.3Kirchhoff’s laws, a formula for the combined resistance of two or more
• derive, using Kirchhoff’s laws, a formula for the combined resistance of two or more resistors in series
10.2.4The formula for the combined resistance of two or more resistors in series
• use the formula for the combined resistance of two or more resistors in series
10.2.5Kirchhoff’s laws, a formula for the combined resistance of two or more
• derive, using Kirchhoff’s laws, a formula for the combined resistance of two or more resistors in parallel
10.2.6The formula for the combined resistance of two or more resistors in parallel
• use the formula for the combined resistance of two or more resistors in parallel
10.2.7Kirchhoff’s laws to solve simple circuit problems
• use Kirchhoff’s laws to solve simple circuit problems
10.3 Potential dividers
10.3.1The principle of a potential divider circuit
• understand the principle of a potential divider circuit
10.3.2The principle of the potentiometer as a means of comparing potential
• recall and use the principle of the potentiometer as a means of comparing potential differences
10.3.3The use of a galvanometer in null methods
• understand the use of a galvanometer in null methods
10.3.4The use of thermistors and light-dependent resistors in potential dividers
• explain the use of thermistors and light-dependent resistors in potential dividers to provide a potential difference that is dependent on temperature and light intensity