1. Make a sketch of the triangles shown below and mark on each triangle the hypotenuse, the opposite and the adjacent sides to the angle. a b c.

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1 Chapter 16 Trigonometry Exercise Make a sketch of the triangles shown below and mark on each triangle the hypotenuse, the opposite and the adjacent sides to the angle. adj 2. Use the tangent (or tan) button on a scientific calculator to find the following tangents (correct to two decimal places) : a tan 40 b tan 44 5 c tan Look at this right angled triangle with ABC = 20. a What is the length of the opposite side? b What is the length of the adjacent side? 20 c Divide :- (opp adj) to get tan 20. B 11 cm d Look up tan 20 on your calculator to check you get the same answer. A 4 cm C Exercise Make a sketch of this right angled triangle. COPY and complete to calculate the size of the opposite side : A tan B = opp adj => tan 34 = x 10 => x = 10 x tan 34 B 34 C => x =... cm (to 1 dec place) TeeJay Publishers 2007 page 63 Trigonometry

2 2. Use the method shown on the previous page to calculate the length of the opposite side () of each triangle. a b 6 cm c cm 3. The angle of elevation of the top of a tree from a point 21 metres from its foot is Calculate the height of the tree. 21 m 4. A hill runs up from a main road to the house at the top. The hill makes an angle of 12 to the road. Calculate how high the house is above the road. 12 hill road 35 m Exercise Use the correct buttons on YOUR calculator to find the sizes of the angles A, B and C (to the nearest degree) :- a tan A = b tan B = c tan C = Make a sketch of this right angled triangle. COPY and complete the following to calculate the size of PQR to 1 decimal place. P tan Q = opp adj => tan = => tan =... Q R => x =... (to 1 dec. pl.) PQR =... TeeJay Publishers 2007 page 64 Trigonometry

3 3. Use the method shown on the previous page to calculate the size of the angle marked in each triangle. b 7 cm 15 cm 15 cm a 8 cm c 5 cm 4. Ross is 180 centimetres tall. In the sunshine, he casts a shadow on the ground 260 centimetres long. Find the angle of elevation () of the sun. x 260 cm 180 cm ft What is the angle of elevation of the top of a bell tower 150 feet high, from a point on level ground x 30 feet from the base of the tower? 30 ft Exercise Use the sine (or sin) button on your scientific calculator to calculate the following, correct to two decimal places : a sin 10 b sin 60 c sin Use the correct buttons on your calculator to find the sizes of the angles A, B and C (to the nearest degree) :- a sin A = b sin B = 1 8 c sin C = Use the sine ratio in these triangles to find the size of the opposite side in each case cm 27 cm TeeJay Publishers 2007 page 65 Trigonometry

4 4. A kite is flying at an angle of 73 to the ground and is attached to a taut string 100 metres long. Calculate the height of the kite above the ground. 100 m A funicular railway is 275 metres long and the angle between the railway and the ground is m 14 Calculate the height (etres) of the top of the railway above the ground. 6. Use the sine ratio in these triangles to calculate the size of the angles asked for. (Give each answer to 1 decimal place if necessary.) a 14 cm 11 cm b 7 cm 16 cm 25 cm c 7. A pencil long lies with its end just resting against the end of a book 7 cm thick. Calculate the angle between the table and the pencil (). 7 cm 8. A plank is 2 5 metres long and is just touching the top of a wall, 1 61 metres in height. 2 5 m 1 61 m Calculate the angle between the plank and the ground. TeeJay Publishers 2007 page 66 Trigonometry

5 Exercise Use the cosine (or cos) button on your scientific calculator to calculate the following, correct to two decimal places : a cos 12 b cos 30 c cos Use the correct buttons on your calculator to find the sizes of the angles A, B and C (to the nearest degree) :- a cos A = b cos B = 1 5 c cos C = Use the cosine ratio in these triangles to find the size of the adjacent side in each case cm cm 4. Calculate the size of angle a, b and c in each of these triangles :- a b 16 cm c b 8 cm 9 cm c a 5. A telephone pole has a support cable 5 4 metres long attached from its top to a point on the ground, 4 5 metres along from the base of the pole. Calculate the angle the cable makes with the ground. 5 4 m 4 5 m m 23 The angle between the sloping roof on this hut and the horizontal is 23. The sloping roof is 3 1 metres long. Calculate the width of the hut. TeeJay Publishers 2007 page 67 Trigonometry

6 Exercise 16.6 O S H A C H O T A 1. Use the correct ratio from SOHCAHTOA to find the value of x in each case. 14 cm d e f 9 cm cm 11 cm 16 cm 2. This picture shows a lamp-post 5 3 metres long, which has toppled over and come to rest against the top of a 5 3 m wall, 4 2 metres high. 4 2 m Calculate the size of the angle (x ) between the lamp-post and the ground. 3. A plank, just touching the top of a wall, is 6 5 metres long. Calculate how far away the foot of the plank is from the wall. 6 5 m wall cm This flag is in the shape of a right angled triangle. Calculate the size of the 20 cm angled marked x in the flag. TeeJay Publishers 2007 page 68 Trigonometry

7 Revision Exercise 1. Use your calculator to find the following (to two decimal places) :- a sin 68 b cos 30 c tan Use your calculator to find the sizes of the angles a, b, and c. a sin a = b cos b = c tan c = Use the correct ratio from SOHCAHTOA to find the value of x in each case. 9 cm 13 cm 17 cm 69 d e f 8 2 cm 20 cm 11 cm cm 4. Calculate the height of the tree. 4 2 m A bus is parked next to a cable supporting the bus park floodlights. This cable makes an angle of 74 with the ground m The cable is fixed at a point 2 5 metres from the base of the pole. Calculate the height of the floodlight pole. 6. The steps to the large slide are 5 2 metres long. The bottom of the steps is 3 8 metres from a metal support pole. Calculate the size of the angle (x), between the steps and the ground. 5 2 m TeeJay Publishers 2007 page 69 Trigonometry 3 8 m

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