Home
Class 10
MATHS
A man gose 15 m due west and then 8 m du...

A man gose 15 m due west and then 8 m due north. Calculate the distance from the starting point.

Text Solution

Verified by Experts

The correct Answer is:
17 m
Promotional Banner

Topper's Solved these Questions

  • TRIANGLES

    OSWAAL PUBLICATION|Exercise TOPIC-4 PYTHAGOREAN TRIPLETS (SHORT ANSWER TYPE QUESTIONS)|9 Videos
  • TRIANGLES

    OSWAAL PUBLICATION|Exercise TOPIC-4 PYTHAGOREAN TRIPLETS (LONG ANSWER TYPE QUESTIONS)|7 Videos
  • TRIANGLES

    OSWAAL PUBLICATION|Exercise TOPIC-4 PYTHAGOREAN TRIPLETS (MULTIPLE CHOICE QUESTIONS)|16 Videos
  • SURFACE AREA AND VOLUMES

    OSWAAL PUBLICATION|Exercise EXERCISE 15.5|5 Videos

Similar Questions

Explore conceptually related problems

A man steadily gores 10 m due east and then 24 m due north. Find the distance from the starting point.

A vertical tree is broken by the wind at a height of 6 m from its foot and its top touches the ground at a distance of 8 m from the foot of the tree. Calculate the distance between the top of the tree before breaking and the point at which of the tree touches the ground after break.

A man running a racecourse notes that the sum of the distances from the two flag posts from him is always 10 m and the distance between the flag posts is 8 m. Find the equation of the posts traced by the man.

A beam of light consisting of two wave lengths 4200 Å and 5600 Å is used to obtain interference fringes in Young's double slit experiment. The distance between the slits is 0.3 mm and the distance between the slits and the screen is 1.5 m. Compute the least distance of the point from the central maximum, where the bright fringes due to both the wavelengths coincide.

A beam of light consisting of two wavelengths 500 nm and 400 nm is used to obtain interference fringes in Young's double slit experiment. The distance between the slits is 0.3 mm and the distance between the slits and the screen is 1.5 m. Compute the least distance of the point from the central maximum, where the bright fringes due to both the wavelengths coincide.

A particle describing a uniform accelerated motion covers 110 m in 2s and 560 m in 8s from the start. Calculate initial velocity and uniform acceleration.

A man sees the top of a tower in a mirror which is at a distance of 87.6m from the tower. The mirror is on the ground facing upwards. The man is 0.4m away from the mirror and his height is 1.5m. How tall is the tower?

Two point charges +10nC and -10nC are separated by a distance of 0.02m. Calculate the electric field intensity at a point P on the axis of the dipole at 0.01 from +10nC .

A man moves along the path abode as shown in the Fig. What is his displacement from the point of start?