Carbon dioxide particles in our atmosphere trap heat and raise the planet’s temperature. Even if all greenhouse-gas emissions miraculously ended today, the planet would continue to warm through the rest of the century because of the amount of carbon we have already added to the atmosphere. Carbon dioxide accounts for about half of global warming. The function y = 2.5 sin 2 π x + 0.0216 x 2 + 0.654 x + 316 models carbon dioxide concentration, y , in parts per million, where x = 0 represents January 1960; x = 1 12 , February 1960: x = 2 12 March 1960; … , x = 1 , January 1961; x = 13 12 , February 1961: and so on. Use a graphing utility to graph the function in a [30, 48, 5] by [310, 420, 5] viewing rectangle. Describe what the graph reveals about carbon dioxide concentration from 1990 through 2008.
Carbon dioxide particles in our atmosphere trap heat and raise the planet’s temperature. Even if all greenhouse-gas emissions miraculously ended today, the planet would continue to warm through the rest of the century because of the amount of carbon we have already added to the atmosphere. Carbon dioxide accounts for about half of global warming. The function y = 2.5 sin 2 π x + 0.0216 x 2 + 0.654 x + 316 models carbon dioxide concentration, y , in parts per million, where x = 0 represents January 1960; x = 1 12 , February 1960: x = 2 12 March 1960; … , x = 1 , January 1961; x = 13 12 , February 1961: and so on. Use a graphing utility to graph the function in a [30, 48, 5] by [310, 420, 5] viewing rectangle. Describe what the graph reveals about carbon dioxide concentration from 1990 through 2008.
Solution Summary: The author explains how the graph is drawn using the function y=2.5mathrmsin2pi x+0.0216x2.
Carbon dioxide particles in our atmosphere trap heat and raise the planet’s temperature. Even if all greenhouse-gas emissions miraculously ended today, the planet would continue to warm through the rest of the century because of the amount of carbon we have already added to the atmosphere. Carbon dioxide accounts for about half of global warming. The function
y
=
2.5
sin
2
π
x
+
0.0216
x
2
+
0.654
x
+
316
models carbon dioxide concentration, y, in parts per million, where
x
=
0
represents January 1960;
x
=
1
12
, February 1960:
x
=
2
12
March 1960;
…
,
x
=
1
, January 1961;
x
=
13
12
, February 1961: and so on. Use a graphing utility to graph the function in a [30, 48, 5] by [310, 420, 5] viewing rectangle. Describe what the graph reveals about carbon dioxide concentration from 1990 through 2008.
٣/١
R2X2
2) slots per pole per phase = 3/3 1
B18060
msl
Kd
3
Kol Sin (1)
1sin()
sin(30)
Sin (30)
اذا میرید شرح الكتب بس 0 بالفراغ
3)
cos (30) 0.866
4) Rotating
5) Synchronous speeds
120*50
G
looo
1000-950
1000
50:05
Copper losses: 5kw
Rotor input 5
loo kw
0.05
6) 1
اذا ميريد شرح الكتب فقط look
7) rotor
DC
ined sove in peaper
I need a detailed
solution on paper
please
0 64
(Find the solution of the initial-valued problems:
xy' + 2y = x³e* ;y(1) = 0
Q1// Find the solution of: (1) y' + ytqpx = see²x y³
A fluid has density 800 kg/m³ and flows with velocity v = xi + yj + zk, where x, y, and z are measured in
meters, and the components of u are measured in meters per second. Find the rate of flow outward
through the part of the paraboloid z = 64 - x² - y² that lies above the xy plane.
۳/۱
: +0
العنوان
I need a detailed drawing with explanation
R₂ = X2
2) slots per pole per phase 3/31
Le
msl
180
60
Kd
Ka Sin (1)
Isin (6)
sin(30)
Sin (30)
اذا ميريد شرح الكتب بس 0 بالفراغ
3) Cos (30) 0.866
4) Rotating
5) Synchronous speed, 120 x 50
S = 1000-950
1000
Copper bosses: 5kw
Rotor input 5
6
: loo kw
6) 1
0.05
اذا ميريد شرح الكتب فقط 100
7) rotor
DC
1000
ined sove in peaper
I need a detailed
solution on paper
please
// Find the solution of:
|(2xy³ + 4x)y' = x²y² + y²
351
// Find the solution of: (1) 2xyy' = 1+ y²
01
175
T
Τ
M
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