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A man on the top of a tower: standing on the seashore: finds that a boat coming towards him takes 10 min for the angle of depression to change from 30 to 60. Find the time taken by the boat to reach the shore from this position

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A man on the top of a tower,standing on the seashore,finds that a boat coming towards him takes 10 minutes for the angle of depression to change from 30o to 60o. Find the time taken by the boat to reach the shore from the position.

A man on the top of a tower, standing on the Sea-shore, finds that a boat coming towards him takes 10 minutes for the angle of depression to,change from 30^@ to 60^@ . How soon the boat reach the sea-Shore? समुद्र के किनारे एक टॉवर के शीर्ष पर खड़ा व्यक्ति यह पाता है कि उसकी तरफ आ रही नाव का अवनमन कोण 10 मिनट में 30^@ to 60^@ हो जाता है। नाव समुद्र के किनारे देर में आ जाएगी?

A person from the top of a hill observes a vehicle moving towards him at a uniform speed. It takes 10 minutes for the angle of depression to change from 45^(@) to 60^(@) . After this the time required by the vehicle to reach the bottom of the hill is:

A man on the top of a vertical tower observes a car moving at a uniform speed coming directly towards it.If it takes 12 minutes for the angle of depression to change from 30^(0) to 45^(0) ,how soon after this will the car reach the tower? Give your answer to the nearest second.

A straight highway leads to the foot of a tower. A man standing at the top of the tower observes a car at an angle of depression of 30^@ , which is approaching the foot of the tower with a uniform speed. Six seconds later, the angle of depression of the car is found to be 60^@. Find the time taken by the car to reach the foot of the tower from this point.

A man of a cliff observes a boat at an angle of depression of 30^(@) which is approaching the shore to the point immediately beneath the observer with a uniform speed.Six minutes later,the angle of depression of the boat is found to be 60^(0). Find the time taken by the boat to reach the shore.

A man observes a car from the top of a tower, which is moving towards the tower with a uniform speed. If the angle of depression of the car change from 30^(@)" and "45^(@) in 12 minutes, find the time taken by the car now toreach the tower.

A man on a cliff observes a boat at an angle of depression of 30^(@) which is approaching the shore to the point immediately beneath the observer with a uniform speed.Six minutes later; the angle of depressions of the boat is found to be 60^(@). Find the time taken by boat to reach the shore.

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  1. Two towers of the same height stand on either side of a road 60 m wide...

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  2. From the top of a cliff, 200m high, the angle of depression of the top...

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  3. A man on the top of a tower: standing on the seashore: finds that a bo...

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  4. The angles of elevation of an aeroplane from two places 10 km apart ar...

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  5. Two towers of the same height stand on opposite sides of a road 100 m ...

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  6. The elevation of a tower at a station A due north of it is 45^@ and at...

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  7. If the shadow of a tower is 30 m when the sun's altitude is 30^(@) wha...

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  8. A helicopter is in a stationary position at a certain height over the ...

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  9. A vertical tower stands on a horizontal plane and surmounted by a flag...

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  10. A round balloon of radius 'r' subtends an angle alpha at the eye of th...

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  11. At the foot of a mountain the elevation of its summit is 45^@, after a...

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  12. An aeroplane when 3000 m high passes vertically above another aeroplan...

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  13. The angle of elevation of a cloud from a height h above the level of w...

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  14. A palm tree 90 ft high, is broken by the wind and its upper part meet ...

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  15. If 0lt theta lt 90^(@), the (sin theta+cos theta) is :

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  16. The value of x satisfying the equation sinx+(1)/(sinx)=(7)/(2sqrt(3)) ...

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  17. If sintheta-costheta=0 and 0ltthetalepi//2, then theta is equal to :

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  18. Given that theta is acute and then sin theta=(3)/(5). Let x, y be posi...

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  19. Which one of the following pairs is correctly matched?

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  20. If ptan45^@.cos60^@=sin60^@cot60^@, then p is equal to

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