Loudness of Sound Problems 129 − 132 use the following discussion: The loudness L ( X ) , measured in decibels ( d B ) , of a sound of intensity x , measured in watts per square meter, is defined as L ( x ) = 10 l o g x l 0 , where l 0 = 10 − 12 watt per square meter is the least intense sound that a human ear can detect. Determine the loudness, in decibels, of each of the following sounds. Heavy city traffic: intensity of x = 10 − 3 watt per square meter.
Loudness of Sound Problems 129 − 132 use the following discussion: The loudness L ( X ) , measured in decibels ( d B ) , of a sound of intensity x , measured in watts per square meter, is defined as L ( x ) = 10 l o g x l 0 , where l 0 = 10 − 12 watt per square meter is the least intense sound that a human ear can detect. Determine the loudness, in decibels, of each of the following sounds. Heavy city traffic: intensity of x = 10 − 3 watt per square meter.
Solution Summary: The author explains the loudness of heavy city traffic in decibels, if the intensity of the sound is x=10-3 watt per square meter.
Loudness of Sound Problems
129
−
132
use the following discussion: The loudness
L
(
X
)
, measured in decibels
(
d
B
)
, of a sound of intensity
x
, measured in watts per square meter, is defined as
L
(
x
)
=
10
l
o
g
x
l
0
, where
l
0
=
10
−
12
watt per square meter is the least intense sound that a human ear can detect. Determine the loudness, in decibels, of each of the following sounds.
Heavy city traffic: intensity of
x
=
10
−
3
watt per square meter.
Use the information to find and compare Δy and dy. (Round your answers to four decimal places.)
y = x4 + 7 x = −3 Δx = dx = 0.01
Δy =
dy =
4. A car travels in a straight line for one hour. Its velocity, v, in miles per hour at six minute intervals is shown
in the table. For each problem, approximate the distance the car traveled (in miles) using the given method,
on the provided interval, and with the given number of rectangles or trapezoids, n.
Time (min) 0 6 12 18|24|30|36|42|48|54|60
Speed (mph) 0 10 20 40 60 50 40 30 40 40 65
a.) Left Rectangles, [0, 30] n=5
b.) Right Rectangles, [24, 42] n=3
c.) Midpoint Rectangles, [24, 60] n=3
d.) Trapezoids, [0, 24] n=4
The bracket BCD is hinged at C and attached to a control cable at B. Let F₁ = 275 N and F2 = 275 N.
F1
B
a=0.18 m
C
A
0.4 m
-0.4 m-
0.24 m
Determine the reaction at C.
The reaction at C
N Z
F2
D
Chapter 4 Solutions
Pearson eText for Precalculus: Concepts Through Functions, A Unit Circle Approach to Trigonometry -- Instant Access (Pearson+)
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