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lnterschool tournament matches of basketball are going to happen very soon. The coach is making his team practicing very hard. He guided his team, the various tactics how to perform and their respective positions on the ground. A coach is discussing the strategy of the game with his players. The position of players is marked with cross 'x' in the grid. According to sudden requirement, coach of the team decided to increase one player in the 4th quadrant without increasing the total number of players, so he decided to change the position of player F in such a way that F becomes symmetric to D w.r.t. x-axis. Then new position of F is:

Interschool tournament matches of basketball are going to happen very soon. The coach is making his team practicing very hard. He guided his team, the various tactics of how to perform and their respective positions on the ground. A coach is discussing the strategy of the game with his players. The position of players is marked with cross X'in the grid. According to sudden requirement coach of the team decided to increase one player in the 4th quadrant without increasing the total number of players, so he decided to change the position of player F in such a way that F becomes symmetric to D w.r.t. X-axis then new position of F is

Show that thre rate of change of the area of a circle with respect to its radius (at any r) is equal to the circumference of the circle. Try to explain geometrically when this is true by drawing a circle whose radius is increased by an amount r. How can you approximate the resulting change in area DeltaA if Deltar is small ?

How fast the area of a circle increases when its radius is 5cm. (i) respect to radius (ii) with respect to diameter.

(a) A reaction is second order in A and first order in B . (i) Write the differential rate equation. (ii) How is the rate affected on increasing the concentration of A three times? (iii) How is the rate affected when the concentration of both A and B doubled? (b) A first order reaction takes 40 minutes for 30% decomposition. Calculate t_(1//2) for this reaction. (Given log 1.428 = 0.1548)

Consider the following half cell reactions : Br_(2) + 2e^(-) to 2 Br^(-) " " E^(@) = 1.09 V I_(2) + 2e^(-) to 2 I^(-) " " E^(@) = 0.54 V If I_(2) and Br_(2) are added to solution containing 1 M concentration of I^- and Br^- respectively . How will the increase in the concentration of Br^(-) affect E_(cell) ?