Deck 15: Oblique Triangles and Vectors

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Question
State whether the following expressions are positive or negative, without using your calculator or your book.
(a) cos135\cos 135^{\circ}
(b) sin179\sin 179^{\circ}
(c) cot147\cot 147^{\circ}
(d) csc(700)\csc \left(-700^{\circ}\right)
(e) tan(439)\tan \left(439^{\circ}\right)
(f) sec(149)\sec \left(-149^{\circ}\right)
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Question
State whether the following expressions are positive or negative, without using your calculator or your book.
(a) cos225\cos 225^{\circ}
(b) sin314\sin 314^{\circ}
(c) cot495\cot 495^{\circ}
(d) csc820\csc 820^{\circ}
(e) tan(220)\tan \left(-220^{\circ}\right)
(f) sec195\sec 195^{\circ}
Question
In which quadrant will the terminal side of θ\theta lie if θ=192\theta=192^{\circ} ?
Question
In which quadrant will the terminal side of θ\theta lie if θ=235\theta=235^{\circ} ?
Question
In which quadrant will the terminal side of θ\theta lie if θ=235\theta=-235^{\circ} ?
Question
In which quadrant will the terminal side of θ\theta lie if θ=993\theta=993^{\circ} ?
Question
Give the algebraic signs of the sine, cosine, and tangent of 145-145^{\circ} .
Question
Give the algebraic signs of the sine, cosine, and tangent of 315315^{\circ} .
Question
Give the algebraic signs of the sine, cosine, and tangent of 176176^{\circ} .
Question
Write the sine, cosine, and tangent of the angle θ\theta whose terminal side passes through the point (6,5)(6,-5) . Use three significant digits in your answers.
Question
Write the sine, cosine, and tangent of the angle θ\theta whose terminal side passes through the point (3,4)(-3,4) . Use three significant digits in your answers.
Question
Write the sine, cosine, and tangent of the angle θ\theta whose terminal side passes through the point ( -1 , 5)-5) . Use three significant digits in your answers.
Question
Write the sine, cosine and tangent of θ\theta , where cosθ=5/13\cos \theta=5 / 13 and sinθ\sin \theta is positive. Leave your answers in fractional or radical form.
Question
Write the sine, cosine and tangent of θ\theta , where sinθ=5/13\sin \theta=5 / 13 and tanθ\tan \theta is positive. Leave your answers in fractional or radical form.
Question
Write the sine, cosine, and tangent of θ\theta , where secθ=9/7\sec \theta=-9 / 7 and tanθ\tan \theta is positive. Leave your answers in fractional or radical form.
Question
Write the sine, cosine, and tangent of θ\theta , where cscθ=3/2\csc \theta=-3 / 2 and θ\theta is in the third quadrant. Leave your answers in fractional or radical form.
Question
Write the sine, cosine, and tangent of θ\theta , where tanθ=4/5\tan \theta=-4 / 5 and θ\theta is not in the fourth quadrant. Leave your answers in fractional or radical form.
Question
Write the sine, cosine, and tangent of θ\theta , where cotθ=4/5\cot \theta=-4 / 5 and θ\theta is not in the second quadrant. Leave your answers in fractional or radical form.
Question
Write, to four significant digits, the sine, cosine, and tangent of 343343^{\circ} .
Question
Write, to four significant digits, the sine, cosine, and tangent of 102102^{\circ} .
Question
Write, to four significant digits, the sine, cosine, and tangent of 105-105^{\circ} .
Question
Find, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where tanθ=2.018\tan \theta=2.018 .
Question
Find, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where sinθ=0.8412\sin \theta=-0.8412 .
Question
Find, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where cosθ=0.5982\cos \theta=-0.5982 .
Question
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=arcsec12.02\theta=\operatorname{arcsec} 12.02 .
Question
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=tan11.11\theta=\tan^{-1} 1.11 .
Question
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=sin10.59\theta=\sin^{-1} 0.59 .
Question
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=csc116\theta=\csc^{-1} 16 .
Question
Find, to the nearest tenth of a degree, all angles less than 360360^{\circ} whose trigonometric function is given.
(a) cosθ=0.8660\cos \theta=0.8660
(b) cotθ=2\cot \theta=-2
(c) secθ=\sec \theta=\infty
(d) cscθ=5/4\csc \theta=5 / 4
(e) tanθ=1.428\tan \theta=1.428
(f) sinθ=0.135\sin \theta=0.135
Question
Find, to the nearest tenth of a degree, all angles less than 360360^{\circ} whose trigonometric function is given.
(a) sinθ=0.341\sin \theta=-0.341
(b) cosθ=0.138\cos \theta=0.138
(c) tanθ=3.75\tan \theta=3.75
(d) cscθ=7/4\csc \theta=7 / 4
(e) secθ=3/2\sec \theta=3 / 2
(f) cotθ=3.75\cot \theta=-3.75
Question
Evaluate tan217+cos217\tan^{2} 17^{\circ}+\cos^{2} 17^{\circ} to four significant digits.
Question
Evaluate (sin187)(tan43)\left(\sin 187^{\circ}\right)\left(\tan 43^{\circ}\right) to four significant digits.
Question
Evaluate sin217215cos232\sin^{2} 172^{\circ}-15 \cos^{2} 32^{\circ} to four significant digits.
Question
The force in Newtons on the skier shown below is given by F=mgcosθF=m g \cos \theta where mm is the skier's mass in kilograms, g=9.8 m/s2g=9.8 \mathrm{~m} / \mathrm{s}^{2} is the acceleration due to gravity, and θ\theta is the angle the slope makes with the horizontal. Calculate the value of FF if m=80.0 kgm=80.0 \mathrm{~kg} and θ=30.0\theta=30.0^{\circ} .
 The force in Newtons on the skier shown below is given by  F=m g \cos \theta  where  m  is the skier's mass in kilograms,  g=9.8 \mathrm{~m} / \mathrm{s}^{2}  is the acceleration due to gravity, and  \theta  is the angle the slope makes with the horizontal. Calculate the value of  F  if  m=80.0 \mathrm{~kg}  and  \theta=30.0^{\circ} .  <div style=padding-top: 35px>
Question
Fill in the missing parts of this table for triangle ABCA B C .  Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
Question
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
Question
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
Question
Solve the oblique triangle ABCA B C if A=47.8,B=22.1A=47.8^{\circ}, B=22.1^{\circ} , and b=182b=182 .
Question
Solve the oblique triangle ABCA B C if B=80.9,b=84.0B=80.9^{\circ}, b=84.0 , and a=57.0a=57.0 .
Question
Solve the oblique triangle ABCA B C if A=53.3,C=29.4A=53.3^{\circ}, C=29.4^{\circ} , and c=12.8c=12.8 .
Question
Solve the oblique triangle ABCA B C if B=2434,C=4312B=24^{\circ} 34^{\prime}, C=43^{\circ} 12^{\prime} , and b=3.5b=3.5 .
Question
Solve the oblique triangle ABCA B C if C=80.9,b=13.0C=80.9^{\circ}, b=13.0 , and c=17.0c=17.0 .
Question
Solve the oblique triangle ABCA B C if A=25.1,B=59.0A=25.1^{\circ}, B=59.0^{\circ} , and b=3.53 mb=3.53 \mathrm{~m} .
Question
Solve the oblique triangle ABCA B C if B=34.1,C=99.2B=34.1^{\circ}, C=99.2^{\circ} , and c=1.00 cmc=1.00 \mathrm{~cm} .
Question
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .  <div style=padding-top: 35px>
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Solve the oblique triangle ABCA B C if A=84.9,b=3.45A=84.9^{\circ}, b=3.45 , and c=2.78c=2.78 .
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Solve the oblique triangle ABCA B C if a=33,b=28a=33, b=28 , and c=50c=50 .
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Solve the oblique triangle ABCA B C if a=119,b=152a=119, b=152 , and C=12.4C=12.4^{\circ} .
Question
Solve the oblique triangle ABCA B C if a=5.5,b=2.7a=5.5, b=2.7 , and C=3340C=33^{\circ} 40^{\prime} .
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Solve the oblique triangle ABCA B C if a=7.52,b=8.40a=7.52, b=8.40 , and c=12.1c=12.1 . Round answers to the nearest whole number.
Question
Solve the oblique triangle ABCA B C if a=3.5,b=2.0a=3.5, b=2.0 , and C=49C=49^{\circ}
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Solve the oblique triangle ABCA B C if a=1.5,b=2.2a=1.5, b=2.2 , and c=1c=1 .1.
Question
An observer stands 1.12 km1.12 \mathrm{~km} from a launch pad. At 12:00.00, a rocket leaves the pad and heads straight up at a constant velocity. Four seconds later, the observer measures the angle the rocket makes to the horizontal as 19.2919.29^{\circ} . Three seconds after that, the angle the observer measures is 31.4931.49^{\circ} . What is the speed of the rocket to the nearest metre per second?
Question
A student stands a distance from a building and measures the angle to the top of the building to be
18.818.8^{\circ} . The student then walks 24.0ft24.0 \mathrm{ft} . directly towards the building and measures the angle to be 20.220.2^{\circ} .
(a) What is the height of the building?
(b) How close was the student to the building for the second measurement?
Question
The vertical boom of the quarry crane pictured below is 23.4 m23.4 \mathrm{~m} high. The angle that the swinging boom of the crane makes with the vertical boom is 38.238.2^{\circ} and the swinging boom is 20.0 m20.0 \mathrm{~m} long. How long is the length of cable between the vertical boom and the swinging boom?
 The vertical boom of the quarry crane pictured below is  23.4 \mathrm{~m}  high. The angle that the swinging boom of the crane makes with the vertical boom is  38.2^{\circ}  and the swinging boom is  20.0 \mathrm{~m}  long. How long is the length of cable between the vertical boom and the swinging boom?  <div style=padding-top: 35px>
Question
What must the angle between the handles of the grabber pictured below be in order to pick up an object 12.7 cm wide?
What must the angle between the handles of the grabber pictured below be in order to pick up an object 12.7 cm wide?  <div style=padding-top: 35px>
Question
A 10.2 m10.2 \mathrm{~m} pole and a 9.1 m9.1 \mathrm{~m} pole are attached by a 3.1 m3.1 \mathrm{~m} long string. The other ends of the poles are hinged together. What is the angle AA for which the string is taut?
 A  10.2 \mathrm{~m}  pole and a  9.1 \mathrm{~m}  pole are attached by a  3.1 \mathrm{~m}  long string. The other ends of the poles are hinged together. What is the angle  A  for which the string is taut?  <div style=padding-top: 35px>
Question
Three circles are to be bored in a plate. The circle AA with a diameter 4.00 cm4.00 \mathrm{~cm} and the circle BB with a diameter 5.50 cm5.50 \mathrm{~cm} are tangent to the circle CC with a diameter 7.50 cm7.50 \mathrm{~cm} . Determine the distance between the centre of circle A\mathrm{A} and the centre of circle B\mathrm{B} .
 Three circles are to be bored in a plate. The circle  A  with a diameter  4.00 \mathrm{~cm}  and the circle  B  with a diameter  5.50 \mathrm{~cm}  are tangent to the circle  C  with a diameter  7.50 \mathrm{~cm} . Determine the distance between the centre of circle  \mathrm{A}  and the centre of circle  \mathrm{B} .  <div style=padding-top: 35px>
Question
A triangular lot measures 257 m,316 m257 \mathrm{~m}, 316 \mathrm{~m} , and 177 m177 \mathrm{~m} along its sides. Find the angles between the sides.
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A ship is 76.0 km76.0 \mathrm{~km} directly west of a port. If the ship sails northwest for 14.0 km14.0 \mathrm{~km} , how far will it be from the port?
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The sides of a triangle are 11, 14, and 19. Find the length of the median drawn to the shortest side.
Question
A triangular lot measures 175 m,160 m175 \mathrm{~m}, 160 \mathrm{~m} , and 200 m200 \mathrm{~m} along its sides. Find the angles between the sides to the nearest second.
Question
A ship sails due north for 85.4 nautical miles, then N23E\mathrm{N} 23^{\circ} \mathrm{E} for 14.7 nautical miles. How far is it from where it started?
Question
Point AA is 45.0 m45.0 \mathrm{~m} from point BB and 64.5 m64.5 \mathrm{~m} from point CC . An observer at AA measures angle BACB A C to be 34.034.0^{\circ} . How far apart are BB and CC ?
Question
A building is going to be 6.1 m6.1 \mathrm{~m} wide. The roof will be supported by two 4.6m4.6-\mathrm{m} -rafters. What is the angle at the roof peak?
 A building is going to be  6.1 \mathrm{~m}  wide. The roof will be supported by two  4.6-\mathrm{m} -rafters. What is the angle at the roof peak?  <div style=padding-top: 35px>
Question
A building is going to be 7.10 m7.10 \mathrm{~m} wide. The roof will be supported by two rafters, one 2.25 m2.25 \mathrm{~m} long and the other 5.25 m5.25 \mathrm{~m} long. What is the angle at the roof peak?
 A building is going to be  7.10 \mathrm{~m}  wide. The roof will be supported by two rafters, one  2.25 \mathrm{~m}  long and the other  5.25 \mathrm{~m}  long. What is the angle at the roof peak?  <div style=padding-top: 35px>
Question
Two vectors of magnitude A=16.6A=16.6 and B=19.0B=19.0 are separated by an angle θ=61.0\theta=61.0^{\circ} . Find the resultant and the angle the resultant makes with vector BB .
Question
Two vectors of magnitude A=346A=346 and B=437B=437 are separated by an angle θ=19.4\theta=19.4^{\circ} . Find the resultant and the angle the resultant makes with vector BB .
Question
Two forces of 62 kg62 \mathrm{~kg} and 112 kg112 \mathrm{~kg} act on an object with an angle of 5454^{\circ} between their lines of action. Find the magnitude of their resultant and its direction with respect to the larger force.
Question
The resultant of two forces of 1500 N1500 \mathrm{~N} and 2500 N2500 \mathrm{~N} is 3200 N3200 \mathrm{~N} . What angle does the resultant force make with each of the forces?
Question
Three forces are in equilibrium: 150 N, 300 N, and 250 N. Find the angles between their lines of action.
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Deck 15: Oblique Triangles and Vectors
1
State whether the following expressions are positive or negative, without using your calculator or your book.
(a) cos135\cos 135^{\circ}
(b) sin179\sin 179^{\circ}
(c) cot147\cot 147^{\circ}
(d) csc(700)\csc \left(-700^{\circ}\right)
(e) tan(439)\tan \left(439^{\circ}\right)
(f) sec(149)\sec \left(-149^{\circ}\right)
(a) negative
(b) positive
(c) negative
(d) positive
(e) positive
(f) negative
2
State whether the following expressions are positive or negative, without using your calculator or your book.
(a) cos225\cos 225^{\circ}
(b) sin314\sin 314^{\circ}
(c) cot495\cot 495^{\circ}
(d) csc820\csc 820^{\circ}
(e) tan(220)\tan \left(-220^{\circ}\right)
(f) sec195\sec 195^{\circ}
(a) negative
(b) negative
(c) negative
(d) positive
(e) negative
(f) negative
3
In which quadrant will the terminal side of θ\theta lie if θ=192\theta=192^{\circ} ?
III
4
In which quadrant will the terminal side of θ\theta lie if θ=235\theta=235^{\circ} ?
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5
In which quadrant will the terminal side of θ\theta lie if θ=235\theta=-235^{\circ} ?
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6
In which quadrant will the terminal side of θ\theta lie if θ=993\theta=993^{\circ} ?
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7
Give the algebraic signs of the sine, cosine, and tangent of 145-145^{\circ} .
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8
Give the algebraic signs of the sine, cosine, and tangent of 315315^{\circ} .
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9
Give the algebraic signs of the sine, cosine, and tangent of 176176^{\circ} .
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10
Write the sine, cosine, and tangent of the angle θ\theta whose terminal side passes through the point (6,5)(6,-5) . Use three significant digits in your answers.
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11
Write the sine, cosine, and tangent of the angle θ\theta whose terminal side passes through the point (3,4)(-3,4) . Use three significant digits in your answers.
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12
Write the sine, cosine, and tangent of the angle θ\theta whose terminal side passes through the point ( -1 , 5)-5) . Use three significant digits in your answers.
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13
Write the sine, cosine and tangent of θ\theta , where cosθ=5/13\cos \theta=5 / 13 and sinθ\sin \theta is positive. Leave your answers in fractional or radical form.
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14
Write the sine, cosine and tangent of θ\theta , where sinθ=5/13\sin \theta=5 / 13 and tanθ\tan \theta is positive. Leave your answers in fractional or radical form.
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15
Write the sine, cosine, and tangent of θ\theta , where secθ=9/7\sec \theta=-9 / 7 and tanθ\tan \theta is positive. Leave your answers in fractional or radical form.
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16
Write the sine, cosine, and tangent of θ\theta , where cscθ=3/2\csc \theta=-3 / 2 and θ\theta is in the third quadrant. Leave your answers in fractional or radical form.
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17
Write the sine, cosine, and tangent of θ\theta , where tanθ=4/5\tan \theta=-4 / 5 and θ\theta is not in the fourth quadrant. Leave your answers in fractional or radical form.
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18
Write the sine, cosine, and tangent of θ\theta , where cotθ=4/5\cot \theta=-4 / 5 and θ\theta is not in the second quadrant. Leave your answers in fractional or radical form.
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19
Write, to four significant digits, the sine, cosine, and tangent of 343343^{\circ} .
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20
Write, to four significant digits, the sine, cosine, and tangent of 102102^{\circ} .
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21
Write, to four significant digits, the sine, cosine, and tangent of 105-105^{\circ} .
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22
Find, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where tanθ=2.018\tan \theta=2.018 .
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23
Find, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where sinθ=0.8412\sin \theta=-0.8412 .
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24
Find, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where cosθ=0.5982\cos \theta=-0.5982 .
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25
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=arcsec12.02\theta=\operatorname{arcsec} 12.02 .
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26
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=tan11.11\theta=\tan^{-1} 1.11 .
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27
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=sin10.59\theta=\sin^{-1} 0.59 .
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28
Evaluate, to the nearest tenth of a degree, all positive angles less than 360360^{\circ} where θ=csc116\theta=\csc^{-1} 16 .
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29
Find, to the nearest tenth of a degree, all angles less than 360360^{\circ} whose trigonometric function is given.
(a) cosθ=0.8660\cos \theta=0.8660
(b) cotθ=2\cot \theta=-2
(c) secθ=\sec \theta=\infty
(d) cscθ=5/4\csc \theta=5 / 4
(e) tanθ=1.428\tan \theta=1.428
(f) sinθ=0.135\sin \theta=0.135
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30
Find, to the nearest tenth of a degree, all angles less than 360360^{\circ} whose trigonometric function is given.
(a) sinθ=0.341\sin \theta=-0.341
(b) cosθ=0.138\cos \theta=0.138
(c) tanθ=3.75\tan \theta=3.75
(d) cscθ=7/4\csc \theta=7 / 4
(e) secθ=3/2\sec \theta=3 / 2
(f) cotθ=3.75\cot \theta=-3.75
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31
Evaluate tan217+cos217\tan^{2} 17^{\circ}+\cos^{2} 17^{\circ} to four significant digits.
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32
Evaluate (sin187)(tan43)\left(\sin 187^{\circ}\right)\left(\tan 43^{\circ}\right) to four significant digits.
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33
Evaluate sin217215cos232\sin^{2} 172^{\circ}-15 \cos^{2} 32^{\circ} to four significant digits.
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34
The force in Newtons on the skier shown below is given by F=mgcosθF=m g \cos \theta where mm is the skier's mass in kilograms, g=9.8 m/s2g=9.8 \mathrm{~m} / \mathrm{s}^{2} is the acceleration due to gravity, and θ\theta is the angle the slope makes with the horizontal. Calculate the value of FF if m=80.0 kgm=80.0 \mathrm{~kg} and θ=30.0\theta=30.0^{\circ} .
 The force in Newtons on the skier shown below is given by  F=m g \cos \theta  where  m  is the skier's mass in kilograms,  g=9.8 \mathrm{~m} / \mathrm{s}^{2}  is the acceleration due to gravity, and  \theta  is the angle the slope makes with the horizontal. Calculate the value of  F  if  m=80.0 \mathrm{~kg}  and  \theta=30.0^{\circ} .
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35
Fill in the missing parts of this table for triangle ABCA B C .  Fill in the missing parts of this table for triangle  A B C .
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36
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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37
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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38
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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39
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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40
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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41
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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42
Solve the oblique triangle ABCA B C if A=47.8,B=22.1A=47.8^{\circ}, B=22.1^{\circ} , and b=182b=182 .
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43
Solve the oblique triangle ABCA B C if B=80.9,b=84.0B=80.9^{\circ}, b=84.0 , and a=57.0a=57.0 .
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44
Solve the oblique triangle ABCA B C if A=53.3,C=29.4A=53.3^{\circ}, C=29.4^{\circ} , and c=12.8c=12.8 .
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45
Solve the oblique triangle ABCA B C if B=2434,C=4312B=24^{\circ} 34^{\prime}, C=43^{\circ} 12^{\prime} , and b=3.5b=3.5 .
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46
Solve the oblique triangle ABCA B C if C=80.9,b=13.0C=80.9^{\circ}, b=13.0 , and c=17.0c=17.0 .
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47
Solve the oblique triangle ABCA B C if A=25.1,B=59.0A=25.1^{\circ}, B=59.0^{\circ} , and b=3.53 mb=3.53 \mathrm{~m} .
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48
Solve the oblique triangle ABCA B C if B=34.1,C=99.2B=34.1^{\circ}, C=99.2^{\circ} , and c=1.00 cmc=1.00 \mathrm{~cm} .
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49
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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50
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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51
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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52
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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53
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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54
Fill in the missing parts of this table for triangle ABCA B C .
 Fill in the missing parts of this table for triangle  A B C .
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55
Solve the oblique triangle ABCA B C if A=84.9,b=3.45A=84.9^{\circ}, b=3.45 , and c=2.78c=2.78 .
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56
Solve the oblique triangle ABCA B C if a=33,b=28a=33, b=28 , and c=50c=50 .
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57
Solve the oblique triangle ABCA B C if a=119,b=152a=119, b=152 , and C=12.4C=12.4^{\circ} .
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58
Solve the oblique triangle ABCA B C if a=5.5,b=2.7a=5.5, b=2.7 , and C=3340C=33^{\circ} 40^{\prime} .
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59
Solve the oblique triangle ABCA B C if a=7.52,b=8.40a=7.52, b=8.40 , and c=12.1c=12.1 . Round answers to the nearest whole number.
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60
Solve the oblique triangle ABCA B C if a=3.5,b=2.0a=3.5, b=2.0 , and C=49C=49^{\circ}
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61
Solve the oblique triangle ABCA B C if a=1.5,b=2.2a=1.5, b=2.2 , and c=1c=1 .1.
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62
An observer stands 1.12 km1.12 \mathrm{~km} from a launch pad. At 12:00.00, a rocket leaves the pad and heads straight up at a constant velocity. Four seconds later, the observer measures the angle the rocket makes to the horizontal as 19.2919.29^{\circ} . Three seconds after that, the angle the observer measures is 31.4931.49^{\circ} . What is the speed of the rocket to the nearest metre per second?
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63
A student stands a distance from a building and measures the angle to the top of the building to be
18.818.8^{\circ} . The student then walks 24.0ft24.0 \mathrm{ft} . directly towards the building and measures the angle to be 20.220.2^{\circ} .
(a) What is the height of the building?
(b) How close was the student to the building for the second measurement?
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64
The vertical boom of the quarry crane pictured below is 23.4 m23.4 \mathrm{~m} high. The angle that the swinging boom of the crane makes with the vertical boom is 38.238.2^{\circ} and the swinging boom is 20.0 m20.0 \mathrm{~m} long. How long is the length of cable between the vertical boom and the swinging boom?
 The vertical boom of the quarry crane pictured below is  23.4 \mathrm{~m}  high. The angle that the swinging boom of the crane makes with the vertical boom is  38.2^{\circ}  and the swinging boom is  20.0 \mathrm{~m}  long. How long is the length of cable between the vertical boom and the swinging boom?
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65
What must the angle between the handles of the grabber pictured below be in order to pick up an object 12.7 cm wide?
What must the angle between the handles of the grabber pictured below be in order to pick up an object 12.7 cm wide?
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66
A 10.2 m10.2 \mathrm{~m} pole and a 9.1 m9.1 \mathrm{~m} pole are attached by a 3.1 m3.1 \mathrm{~m} long string. The other ends of the poles are hinged together. What is the angle AA for which the string is taut?
 A  10.2 \mathrm{~m}  pole and a  9.1 \mathrm{~m}  pole are attached by a  3.1 \mathrm{~m}  long string. The other ends of the poles are hinged together. What is the angle  A  for which the string is taut?
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67
Three circles are to be bored in a plate. The circle AA with a diameter 4.00 cm4.00 \mathrm{~cm} and the circle BB with a diameter 5.50 cm5.50 \mathrm{~cm} are tangent to the circle CC with a diameter 7.50 cm7.50 \mathrm{~cm} . Determine the distance between the centre of circle A\mathrm{A} and the centre of circle B\mathrm{B} .
 Three circles are to be bored in a plate. The circle  A  with a diameter  4.00 \mathrm{~cm}  and the circle  B  with a diameter  5.50 \mathrm{~cm}  are tangent to the circle  C  with a diameter  7.50 \mathrm{~cm} . Determine the distance between the centre of circle  \mathrm{A}  and the centre of circle  \mathrm{B} .
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68
A triangular lot measures 257 m,316 m257 \mathrm{~m}, 316 \mathrm{~m} , and 177 m177 \mathrm{~m} along its sides. Find the angles between the sides.
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69
A ship is 76.0 km76.0 \mathrm{~km} directly west of a port. If the ship sails northwest for 14.0 km14.0 \mathrm{~km} , how far will it be from the port?
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70
The sides of a triangle are 11, 14, and 19. Find the length of the median drawn to the shortest side.
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71
A triangular lot measures 175 m,160 m175 \mathrm{~m}, 160 \mathrm{~m} , and 200 m200 \mathrm{~m} along its sides. Find the angles between the sides to the nearest second.
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72
A ship sails due north for 85.4 nautical miles, then N23E\mathrm{N} 23^{\circ} \mathrm{E} for 14.7 nautical miles. How far is it from where it started?
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73
Point AA is 45.0 m45.0 \mathrm{~m} from point BB and 64.5 m64.5 \mathrm{~m} from point CC . An observer at AA measures angle BACB A C to be 34.034.0^{\circ} . How far apart are BB and CC ?
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74
A building is going to be 6.1 m6.1 \mathrm{~m} wide. The roof will be supported by two 4.6m4.6-\mathrm{m} -rafters. What is the angle at the roof peak?
 A building is going to be  6.1 \mathrm{~m}  wide. The roof will be supported by two  4.6-\mathrm{m} -rafters. What is the angle at the roof peak?
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75
A building is going to be 7.10 m7.10 \mathrm{~m} wide. The roof will be supported by two rafters, one 2.25 m2.25 \mathrm{~m} long and the other 5.25 m5.25 \mathrm{~m} long. What is the angle at the roof peak?
 A building is going to be  7.10 \mathrm{~m}  wide. The roof will be supported by two rafters, one  2.25 \mathrm{~m}  long and the other  5.25 \mathrm{~m}  long. What is the angle at the roof peak?
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76
Two vectors of magnitude A=16.6A=16.6 and B=19.0B=19.0 are separated by an angle θ=61.0\theta=61.0^{\circ} . Find the resultant and the angle the resultant makes with vector BB .
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77
Two vectors of magnitude A=346A=346 and B=437B=437 are separated by an angle θ=19.4\theta=19.4^{\circ} . Find the resultant and the angle the resultant makes with vector BB .
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78
Two forces of 62 kg62 \mathrm{~kg} and 112 kg112 \mathrm{~kg} act on an object with an angle of 5454^{\circ} between their lines of action. Find the magnitude of their resultant and its direction with respect to the larger force.
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79
The resultant of two forces of 1500 N1500 \mathrm{~N} and 2500 N2500 \mathrm{~N} is 3200 N3200 \mathrm{~N} . What angle does the resultant force make with each of the forces?
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80
Three forces are in equilibrium: 150 N, 300 N, and 250 N. Find the angles between their lines of action.
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