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<h3> Statement </h3>
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$1.3.30^*.$ The projectile leaves the cannon at a velocity $V$ at an angle $\alpha$ to the horizon. What time does the projectile approach the cannon?
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<h3>Solution</h3>
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<p>Using the result obtained in <a href="/1.3.6" target="_blank">1.3.6</a>, at some point in time $t$ we can write the following equations for the velocity of a point:</p>
The equation for the displacement of a point along the axes will be:
At any point
To determine the domain of decrease of the function
It remains to solve the inequality:
First, we determine the points where the left side becomes zero, and then we find the necessary intervals. We get a quadratic equation with respect to
If you are interested in the duration of the time interval during which the approach occurs, it is equal to:
If the minimum is
<h4>Answer</h4>
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<p>$t=(V/g)\sqrt{9\sin^{2}\alpha -8}\text{ with }\sin\alpha >\sqrt{8/9};$</p>
<p>$ t=0\text{ with }\sin\alpha <\sqrt{8/9}.$</p>
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