Figure 2 shows a plan of a patio - Edexcel - A-Level Maths Pure - Question 1 - 2007 - Paper 2
Question 1
Figure 2 shows a plan of a patio. The patio PQRS is in the shape of a sector of a circle with centre Q and radius 6 m.
Given that the length of the straight line PR... show full transcript
Worked Solution & Example Answer:Figure 2 shows a plan of a patio - Edexcel - A-Level Maths Pure - Question 1 - 2007 - Paper 2
Step 1
find the exact size of angle PQR in radians.
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Answer
To find angle PQR, we can use the cosine rule:
c2=a2+b2−2abimesextcos(C)
Here, we have:
c = PR = 6\sqrt{3} m
a = PQ = 6 m
b = QR = 6 m
Substituting these into the formula:
(63)2=62+62−2×6×6×cos(PQR)
This simplifies to:
108=36+36−72×cos(PQR)
Rearranging gives:
72×cos(PQR)=72−108cos(PQR)=72−36=−21
Thus, the angle PQR is:
PQR=32π radians.
Step 2
Show that the area of the patio PQRS is 12m².
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Answer
The area A of a sector is given by:
A=21r2θ,
where r is the radius and (\theta) is the angle in radians.
For our case:
r = 6 m
(\theta = \frac{2\pi}{3})
Substituting into the formula:
A=21×62×32π=21×36×32π=12π m2.
Using (\pi \approx 3.14), this area approximates to 12 m².
Step 3
Find the exact area of the triangle PQR.
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Answer
The area of triangle PQR can be calculated using:
Area=21×a×b×sin(C)
Where:
a = PQ = 6 m
b = QR = 6 m
C = angle PQR = (\frac{2\pi}{3})
Thus:
Area=21×6×6×sin(32π)=21×36×23=93 m2.
Step 4
Find, in m² to 1 decimal place, the area of the segment PRS.
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Answer
The area of the segment PRS can be found by taking the area of the sector PQRS and subtracting the area of triangle PQR:
Area of Segment PRS=Area of Sector−Area of Triangle