Calculating Velocity and Direction of a Sailboat After a Sudden Gust of Wind

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A sailboat initially traveling east at 5 m/s experiences a gust of wind that accelerates it at 0.80 m/s² at a 40-degree angle north of east. To find the boat's final speed after 6 seconds, the change in velocity must be calculated using vector components, with the initial eastward velocity remaining at 5 m/s. The acceleration must be resolved into x (east) and y (north) components, allowing for the application of the formula v = u + at in both directions. The final velocity can be determined using the Pythagorean theorem, while the direction is calculated with the arctangent of the ratio of the y and x velocities. Ultimately, this approach provides a comprehensive understanding of the boat's velocity and direction after the gust subsides.
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A sailboat is traveling east at 5. m/s. A sudden gust of wind gives the boat an acceleration =0.80 m/s^2, 40 degree north of east
1) what is the boat's speed later when the gust subsides?
2) what is the boat's direction 6.0 s later when the gust subsides?

I've a question
I need to find the velocity when the gust wind
so
[text]vf = vi +at [\text]
do the vi =0 or it's 5 m/s though?
how should i visualize the problem?
Thanks again
 
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I'm not really able to see how you can solve it if the 6.0s does not also apply to question 1)
If so then you can calculate the change in velocity.
You can then vectorize this change and see how it effects the x and y velocity.
Since you have 5 m/s as x you can see how they affect each other and you will get a new x vector. Combine the new x vector with the old y vector to get the final vector which has the boat's velocity and direction.
Maybe there's an easier way to do it? Not sure though, are you working with vectors now?
 
Assume the north to be the positive y-direction and east to be the positive x. Resolve the acceleration in both the directions and then apply the equation

v = u +at for each direction.

So, for north, you have the inital velocity as zero while it is 5m/s for east. After calculating the final velocities in each direction, use pythagoras theorem and find the final velocity.

The direction is given by \theta= tan^{-1}\frac{vy}{vx}

\Theta is the angle made with the east.

spacetime
www.geocities.com/physics_all/index.html
 
i still don't get how can I resolve to find the acceleration for each of (x, y) direction
Isn't x acceleration =0 and the y direction is .80 m/s^2 ? I'm confused... please help
 
thank you very much, i got it now .. hihii :)
 
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