The vertical viewing angle θ to a movie screen is the angle formed from the bottom of the screen to a viewer's eye to the top of the screen. Suppose that the viewer is sitting x horizontal feet from an IMAX screen 53 ft high and that the bottom of the screen is 10 vertical feet above the viewer's eye level. Let a be the angle of elevation to the bottom of the screen. a. Write an expression for tan α . b. Write an expression for tan α + θ . c. Using the relationships found in parts (a) and (b), show that θ = tan − 1 63 x − tan − 1 10 x .
The vertical viewing angle θ to a movie screen is the angle formed from the bottom of the screen to a viewer's eye to the top of the screen. Suppose that the viewer is sitting x horizontal feet from an IMAX screen 53 ft high and that the bottom of the screen is 10 vertical feet above the viewer's eye level. Let a be the angle of elevation to the bottom of the screen. a. Write an expression for tan α . b. Write an expression for tan α + θ . c. Using the relationships found in parts (a) and (b), show that θ = tan − 1 63 x − tan − 1 10 x .
Solution Summary: The author explains the expression for mathrmtanalpha , if the vertical viewing angle is the angle formed from the bottom of the screen to viewer eye to the top
The vertical viewing angle
θ
to a movie screen is the angle formed from the bottom of the screen to a viewer's eye to the top of the screen. Suppose that the viewer is sitting
x
horizontal feet from an IMAX screen
53
ft high and that the bottom of the screen is
10
vertical feet above the viewer's eye level. Let
a
be the angle of elevation to the bottom of the screen.
a. Write an expression for
tan
α
.
b. Write an expression for
tan
α
+
θ
.
c. Using the relationships found in parts (a) and (b), show that
θ
=
tan
−
1
63
x
−
tan
−
1
10
x
.
25-30. Normal and tangential components For the vector field F and
curve C, complete the following:
a. Determine the points (if any) along the curve C at which the vector
field F is tangent to C.
b. Determine the points (if any) along the curve C at which the vector
field F is normal to C.
c. Sketch C and a few representative vectors of F on C.
25. F
=
(2½³, 0); c = {(x, y); y −
x² =
1}
26. F
=
x
(23 - 212) ; C = {(x, y); y = x² = 1})
,
2
27. F(x, y); C = {(x, y): x² + y² = 4}
28. F = (y, x); C = {(x, y): x² + y² = 1}
29. F = (x, y); C =
30. F = (y, x); C =
{(x, y): x = 1}
{(x, y): x² + y² = 1}
٣/١
B
msl
kd
180
Ka, Sin (1)
I sin ()
sin(30)
Sin (30)
اذا ميريد شرح الكتب بس 0 بالفراغ
3) Cos (30) 0.866
4) Rotating
5) Synchronous speed, 120 x 50
G
5005
1000
s = 1000-950
Copper bosses 5kW
Rotor input
5
0.05
: loo kw
6) 1
/0001
ined sove in peaper
I need a detailed
solution on paper
please
وه
اذا ميريد شرح الكتب فقط ١٥٠
DC
7) rotor
a
' (y+xlny + xe*)dx + (xsiny + xlnx + dy = 0.
Q1// Find the solution of: (
357
۳/۱
R₂ = X2
2) slots per pole per phase 3/31
B. 180
msl
Kas
Sin (I)
1sin()
sin(30)
Sin (30)
اذا ميريد شرح الكتب بس 0 بالفراغ
3) Cos (30): 0.866
4) Rotating
5) Synchronous speeds
120×50
looo
G
1000-950
1000
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 general solution of the following equations:
QI//y(4)-16y= 0.
Find the general solution of the following equations:
Q2ll yll-4y/ +13y=esinx.
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