Electronics Fundamentals: Circuits, Devices & Applications
8th Edition
ISBN: 9780135072950
Author: Thomas L. Floyd, David Buchla
Publisher: Prentice Hall
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Textbook Question
Chapter 1, Problem 6TFQ
To express
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E) For each quantity in Table 1 write the quantity as a metric prefix in engineering notation and fill
the corresponding SI prefix name.
Table 1
Quantity
Prefix Name
Express each quantity as a
metric prefix in engineering
notation
4.4*10^-2 W
57g
3.4*107 2
47511 L
What is the metric prefix for, 10^9
Worked Example 1-1
Express the following numbers in scientific notation:
a) 408.00
b) 0.007956
Chapter 1 Solutions
Electronics Fundamentals: Circuits, Devices & Applications
Ch. 1 - The number 3300 is written as 3.3103 in both...Ch. 1 - A negative number that is expressed in scientific...Ch. 1 - When you multiply two numbers written in...Ch. 1 - When you divide two numbers written in scientific...Ch. 1 - The metric prefix micro has an equivalent power of...Ch. 1 - To express 56106 with a metric prefix, the result...Ch. 1 - 0.047F is equal to 47nF.Ch. 1 - The number of significant digits in the number...Ch. 1 - When you apply the round to even rule to round off...Ch. 1 - The white neutral lead for ac power should have...
Ch. 1 - The quantity 4.7103 is the same as...Ch. 1 - The quantity 5.3103 is the same as...Ch. 1 - The number 3,300,000 can be expressed in...Ch. 1 - Ten milliamperes can be expressed as...Ch. 1 - Five thousand volts can be expressed as...Ch. 1 - Twenty million ohms can be expressed as 20m 20MW...Ch. 1 - 15.000W is the same as (a)15mW(b)15kW(c)15MW(d)15WCh. 1 - Which of the following is not an electrical...Ch. 1 - The unit of current is Volt watt ampere jouleCh. 1 - The unit of voltage is ohm watt volt faradCh. 1 - The unit of resistance is ampere henry hertz ohmCh. 1 - Hertz is the unit of power inductance frequency...Ch. 1 - The number of significant digits in the number...Ch. 1 - Express each of the following numbers in...Ch. 1 - Express each fractional number in scientific...Ch. 1 - Express each of the following numbers in...Ch. 1 - Express each of the following numbers in...Ch. 1 - Express each of the following as a regular decimal...Ch. 1 - Express each number in regular decimal form:...Ch. 1 - Add the following numbers: (9.2106)+(3.4107)...Ch. 1 - Perform the following substractions:...Ch. 1 - Prob. 9PCh. 1 - Divide the following: (1.0103)(2.5102)...Ch. 1 - Express each number in engineering notation:...Ch. 1 - Express each number in engineering notation:...Ch. 1 - Express each number in engineering notation:...Ch. 1 - Express each number in engineering notation:...Ch. 1 - Add the following numbers and express each result...Ch. 1 - Multiply the following numbers and express each...Ch. 1 - Divide the following numbers and express each...Ch. 1 - Express each number in Problem 11 in ohms using a...Ch. 1 - Express each number in Problem 13 in amperes usign...Ch. 1 - Express each of the following as a quantity having...Ch. 1 - Express the following using metric prefixes: 3106F...Ch. 1 - Express each quantity with a power of ten: 5A 43mV...Ch. 1 - Perform the indicated conversions:...Ch. 1 - Prob. 24PCh. 1 - Add the following quantities: 50mA+680A 120k+2.2M...Ch. 1 - Do the following operations: 10k(2.2k+10k)...Ch. 1 - How many significant digits are in each of the...Ch. 1 - Round each of the following numbers to three...
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- The per unit value of a 1 ohm resistor at 100MVA and 10 kV base voltage is O a. 0.5 pu O b. 2 pu О с. 1 pu O d. 0.2 puarrow_forwardTask I: You have been asked to provide a well written document that explains the concept of SI. To achieve this, the following requirements are needed: A. What is the appropriate prefix and its abbreviation for each of the following multipliers given in Table 1 below? Table 1 Multiplier Prefix name Prefix abbreviation 1000 10-12 0.000001 1000000arrow_forwardTutorial 1. Given a list of numbers with mathematical operations, convert below numbers into scientific notation and Metric prefix as shown in Table 1. Table 1 No Value Scientific Metric unit notation 10A + 0.005kA – 805000mA kA (ii) 8.50 + 1.05KQ + 2058m2 (iii) 20.5kV - 0.0002MV - 2000V V MVarrow_forward
- Convert following numbers in given radix system: a. (213)10 into Hexadecimal b. (E1A)16 into Decimalarrow_forwardEXAMPLE 1 I Wb. 120 80 g=6 1,000 turns 100 40 60 mean magnetic-flux path The magnetic circuit shown in Figure above consists of a laminated core of USS Trans-former 72, 29-gauge steel with an air gap g of 6 mm and an exciting winding of 1,000 turns. The stacking factor for the core is given to be 0.94. Neglect leakage but correct for fringing by adding the length of the air gap to each of the other two dimensions of the cross section. The dc magnetization characteristic for USS Transformer 72, 29-gauge steel is given in Figure. Determine the current in the exciting winding that produces a core flux of 1 X 10-³arrow_forward1.2 The prefix micro stands for: (a) 106 (b) 10³ (c) 10-3 (d) 10-6arrow_forward
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