Electronics Fundamentals: Circuits, Devices & Applications
Electronics Fundamentals: Circuits, Devices & Applications
8th Edition
ISBN: 9780135072950
Author: Thomas L. Floyd, David Buchla
Publisher: Prentice Hall
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Textbook Question
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Chapter 1, Problem 1TFQ

The number 3300 is written as 3.3 × 10 3 in both scientific and engineering notation.

Expert Solution & Answer
Check Mark
To determine

Whether the given statement is true or false.

Answer to Problem 1TFQ

Statement is true, Scientific notation and engineering notation of number 3300 is 3.3×103

Explanation of Solution

Concept Used:

Following steps must be taken to convert a number in scientific notation.

Step 1: Shift decimal point (right side or left side) until there is only one non-zero digit before decimal point.

Step2: Count number of places you shift the decimal point.

Step3:If decimal point gets moved to left then the number goes as positive exponent and if decimal point moves to right then the number goes as negative exponent.

Andfollowing steps must be taken to convert a number in engineering notation.

Step1: To represent number one, two or three digits to the left of decimal point.

Step2: Use power of ten exponent having multiple of 3.

Calculation:

The given number is 3300.

As per the above-mentioned concept,

Scientific notation:

1: Shift decimal point to left side then number is 3.300 .

2: Here decimal point is moved to three places in left direction thus number is 3.300×103 .

Engineering notation:

To shift number to one, two or three digits to left of decimal point so that exponent power of 10 is multiple of 3, thus number is 3.300×103 .

Conclusion:

Scientific notation and Engineering notation of number 3300 is 3.3×103

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Chapter 1 Solutions

Electronics Fundamentals: Circuits, Devices & Applications

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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