# Electrical circuit theory and technology, Third Edition by John Bird BSc (Hons) CEng CMath CSci FIET MIEE FIIE

By John Bird BSc (Hons) CEng CMath CSci FIET MIEE FIIE FIMA FCollT

This textbook for classes in electric rules, circuit idea, and electric know-how takes scholars from the basics of the topic as much as and together with first measure point. The assurance is perfect for these learning engineering for the 1st time as a part of BTEC nationwide and different pre-degree vocational classes, in particular the place development to better degrees of analysis is probably going, in addition to greater Nationals, beginning levels and primary 12 months undergraduate modules.The emphasis is firmly on studying via example:800 specific labored difficulties supply a radical figuring out of the principles1,000 additional difficulties inside one hundred seventy five routines to paintings via and try studying (answers provided)14 revision exams which might be used as assignments (answers to be had to academics only)Learning goals are summarised initially of every chapterSummaries of major formulae usedNow in its 3rd version, this best-selling textbook has been up to date with advancements in key components resembling semiconductor diodes, transistors, batteries and gasoline cells, in addition to fresh fabric on ABCD parameters and Fourier's research. better emphasis is additionally put on displaying how the idea lined is utilized in real-life engineering perform. furthermore, the textual content has been restructured and routines now seem at general durations in order that studying growth could be checked throughout.Support fabric for tutors is offered as a unfastened obtain at http://textbooks.elsevier.comAn teachers' handbook giving complete options and advised marking scheme for all 14 revision checks within the bookAn broad strategies guide for over seven hundred of the 1,000 additional questions within the ebook * new version introduced totally brand new with advancements in key parts akin to semiconductors, transistors, and gas cells, with fresh fabric on ABCD parameters and Fourier's Analysis.* elevated concentrate on real-world events when it comes to illustrative instance - maximises relevance to genuine engineering perform for the scholar reader* wide lecturer aid fabric to be had as loose downloads: options handbook for revision checks; pattern ideas for over seven hundred of the 1,000 extra difficulties

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**Extra info for Electrical circuit theory and technology, Third Edition (Electrical Circuit Theory and Technology) **

**Sample text**

2 V. d. if it delivers (a) 1 A, (b) 20 A, (c) 50 A. 7 V] 3. d. at the terminals of a battery is 16 V when no load is connected and 14 V when a load taking 8 A is connected. Determine the internal resistance of the battery. 25 ] 4. f. 2 supplies a load taking 10 A. d. at the battery terminals and the resistance of the load. 8 ] 5. 1 are connected in series to a load of 21 . d. at the battery terminals. [(a) 1 A (b) 21 V] falls rapidly if in continuous use due to polarization. The hydrogen ﬁlm on the carbon electrode forms faster than can be dissipated by the depolarizer.

It is required to reduce the current to 12 A. Find (a) the resistor which must be connected in series, and (b) the voltage across the resistor. [(a) 4 (b) 48 V] Dividing throughout by V gives: PART 1 1 1 1 + = + R R1 R2 R3 1 This equation must be used when ﬁnding the total resistance R of a parallel circuit. e. in parallel, across a battery source of V volts. e. product sum Problem 6. 12, determine (a) the reading on the ammeter, and (b) the value of resistor R2 . d. across R1 is the same as the supply voltage V .

F. f. f. f. of one cell Total internal resistance of n cells 1 = × internal resistance of one cell n Problem 1. f. 2 V are connected (a) in series, (b) in parallel. f. and the internal resistance of the batteries so formed. 1 1 Problem 4. 2 , are connected in series to a load of 58 . d. at the battery terminals. 2 = 2 . 4. f. f. f. f. 025 Problem 2. f. 0 V. d. if it delivers (a) 5 A, (b) 50 A. f. e. d. decreases as the current drawn increases. Problem 3. d. at the terminals of a battery is 25 V when no load is connected and 24 V when a load taking 10 A is connected.