How to solve for the initial velocity in the y direction (viy) and initial velocity in the x direction (vix)? Please show solutions Given: Vi=15m/s Angle= 30 degrees Total time= 1.53 Range= 9.94m Height= 2.87m
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- For the rest of this problem, assume that 0.3=α and 0.2−=β (each with appropriate SI units). b) Calculate my velocity vector at (i) t = 0 seconds, and (ii) t = 2.0 seconds c) Calculate my average acceleration for the interval from t = 0 to 2.0 secondsUsing this information please help me determine the maximum height, total air time, total horizontal distance, and speed 1.50 seconds after firing.A man on a motorcycle traveling at a uniform speed of 10 m/s throws an empty can straight upward relative to himself with an initial speed of 3.0 m/s. Find the equation of the trajectory as seen by a police officer on the side of the road. Assume the initial position of the can is the point where it is thrown. Ignore air resistance.
- You can use any coordinate system you like to solve aprojectile motion problem. To demonstrate the truth of this statement, consider a ball thrown off the top of a building witha velocity vS at an angle u with respect to the horizontal. Letthe building be 50.0 m tall, the initial horizontal velocity be9.00 m/s, and the initial vertical velocity be 12.0 m/s. Chooseyour coordinates such that the positive y - axis is upward, thex - axis is to the right, and the origin is at the point where theball is released. (a) With these choices, find the ball’s maximumheight above the ground and the time it takes to reachthe maximum height. (b) Repeat your calculations choosingthe origin at the base of the building.A ball was kicked at an angle of 60 degrees with respect to the floor and after 3.2 seconds landed 10 meters ahead. Calculate the average velocity in x (vx), the initial velocity in y (viy), the initial velocity (vi), and the maximum height (ymax)how to use sin and cosine functions, calculate Vx and Vy. With an initial velocity of 20 m/s at 75 degrees above the horizontal
- A projectile is thrown with an initial speed v0 =116m/s at an angle θ =290 as shown in the figure. At time tA the projectile reaches the point A with coordinates (d,h) where d=36.7m in the given coordinate system. Given ( v0 ,θ,d,g), find h. (Take g=9.8 m/s2) Express your answer using two decimal places.Use a graphing utility to obtain the path of a projectile launched from the ground (h = 0) at the specified values of θ = 35°, v0 = 300 feet per second. In the exercise, use the graph to determine the maximum height and the time at which the projectile reaches its maximum height. Also use the graph to determine the range of the projectile and the time it hits the ground. Round all answers to the nearest tenth.Can you please solve it without Kinematic motion formula, and by just using vectors? Thanks
- PLEASE ANSWER ASAP: A 4.61m-tall truck is moving an initial speed of 15.32m/s due West with an acceleration of 0.22 m/s^2 with a 1.66m- person standing at the top of a truck. After 17.93s, the man throws a ball to the ground at shoulder level perpendicular to the left of the truck's direction with an initial velocity of 23.53 m/s at an angle of 42.80° above the horizontal. Assuming shoulder level is 80% of the total height and negligible air resistance, determine the magnitude and direction of the displacement of the ball upon impact. [Use positive angle and CCW]An unsuspecting bird is coasting along in an easterly direction at 2.00 mph when a strong wind from the south imparts a constant acceleration of 0.300 m/s2 . If the wind's acceleration lasts for 3.40 s , find the magnitude ? and direction ?(measured counterclockwise from the easterly direction) of the bird's displacement over this time interval. Assume that the bird is originally travelling in the +? direction and that there are 1609 m in 1 mi . r=3.499m ?= 27.71∘ Now, assume the same bird is moving along again at 2.00 mph in an easterly direction, but this time, the acceleration given by the wind is at a ?=37.0° angle to the original direction of motion, measured counterclockwise from the easterly direction. If the magnitude of the acceleration is 0.300 m/s2 , find the displacement vector ?⃗ and the angle of the displacement ?1 . Enter the components of the vector, ?? and ?? , and the angle. Assume the time interval is still 3.40 s . ?⃗=???̂+???̂On a day when the wind is blowing toward the south at 5 m/s , a runner logs west at 1.6 m/s.what is the magnitude of velocity of the air relative to the runnerCalculate answer to one decimal.