Engineering Mechanics

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(^414) „„„„„ A Textbook of Engineering Mechanics
Consider two bodies A and B moving with velocities vA and vB respectively. Let the actual
directions of vA and vB be as shown in Fig. 19.15 (a).
Fig. 19.15.
Now in order to find the time for exchange of signals, first of all we have to find the relative
velocity of one body with respect to the other. Let us draw the relative velocity diagram XMRN for
the two bodies as usual, in which XR represents the relative velocity as shown in Fig. 19.15 (b).
Fig. 19.16. Exchange of signal diagram
Now let us draw the exchange of signal diagram for the two bodies with the help of their
relative velocity diagram as shown in Fig. 19.16 and as discussed below :



  1. First of all, extend the relative velocity line XR to L.

  2. Now cut off XQ equal to the distance between two bodies, at any given instant, to the
    scale.

  3. With Q as centre and radius equal to the vision distance, draw an arc meeting the relative
    velocity line at P 1 and P 2.

  4. The time for exchange of signals is to the time required by the body B to travel from P 1 to
    P 2 is given by the relation :
    Distance 2 to the scale
    Relative velocity of two bodies


XP
=


  • Distance^1 to the scale
    Relative velocity of two bodies


XP

Notes : 1. A little consideration will show that the two bodies will go on coming nearer to
each other till the body B reaches P 1 (i.e. within the vision distance). At this point, the bodies will start
exchanging signals.They will continue till the body B reaches the point P 2. Beyond this point, the two
bodies will be beyond the vision distance.


  1. Such problems should, preferably, be attempted graphically.
    Example 19.9. Two ships A and B are moving with velocities of 12 km.p.h. in North and
    20 km.p.h. in North-East directions respectively. At midnight, the ship A is 40 km East of B. If they
    can exchange signals when they are 10 km apart, find when they will begin to signal and how long
    they will continue?

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