Reader range. The function given by R ( x ) = 11.74 x 1 / 4 can be used to approximate the maximum range R ( x ) , in miles, of an ARSR-3 surveillance radar with a peak power of x watts (W). ( Source: Introduction to RADAR Techniques , federal Aviation Administration, 1988.) a. a) Find the rate at which maximum radar range as peak power increases from 40,000 W to 60,000 W . b. b) Find R ( 60 , 000 ) − R ( 50 , 000 ) 60 , 000 − 50 , 000 . What does this rate represent?
Reader range. The function given by R ( x ) = 11.74 x 1 / 4 can be used to approximate the maximum range R ( x ) , in miles, of an ARSR-3 surveillance radar with a peak power of x watts (W). ( Source: Introduction to RADAR Techniques , federal Aviation Administration, 1988.) a. a) Find the rate at which maximum radar range as peak power increases from 40,000 W to 60,000 W . b. b) Find R ( 60 , 000 ) − R ( 50 , 000 ) 60 , 000 − 50 , 000 . What does this rate represent?
Reader range. The function given by
R
(
x
)
=
11.74
x
1
/
4
can be used to approximate the maximum range
R
(
x
)
, in miles, of an ARSR-3 surveillance radar with a peak power of x watts (W). (Source: Introduction to RADAR Techniques, federal Aviation Administration, 1988.)
a. a) Find the rate at which maximum radar range as peak power increases from 40,000 W to 60,000 W.
b. b) Find
R
(
60
,
000
)
−
R
(
50
,
000
)
60
,
000
−
50
,
000
. What does this rate represent?
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