Answer:
25 m/s
Explanation:
This is a uniformly accelerated motion, so the velocity at time time is given by
where is the initial velocity and a is the acceleration.
In this problem, the initial velocity is zero: v0=0. The acceleration is the component of the gravitational acceleration projected along the direction of motion, so
Therefore, the velocity after t=10 s will be
Ignoring friction and air resistance, a skier moving down a 15-degree slope with an acceleration of 2.1 m/s² will be traveling at a speed of 21 m/s after 10 seconds.
This question is asking about the speed of a skier sliding down a 15-degree ski slope under the influence of acceleration due to gravity, ignoring friction and air resistance. Given the acceleration of the skier is 2.1 m/s², we can use the equation of motion to find the velocity after a certain time (10 seconds).
This equation is v = u + at, where u is the initial velocity (which is 0 m/s as the skier starts from rest), a is the acceleration (2.1 m/s²), and t is time in seconds (10 seconds). So, v = 0 + 2.1 * 10 = 21m/s.
Therefore, ignoring friction and air resistance, the skier will be moving at a speed of 21 m/s after 10 seconds down the 15-degree ski slope.
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Answer:
The earth has a larger mass and therefore more inertia.
Explanation:
Answer:
The correct answer a
Explanation:
In the fluid pressure is a measure of force per unit area, in this case force is the weight of the fluid that increases as we descend. Therefore, the pressure increases with the depth of the fluid.
The correct answer a
Answer:
a. at the bottom
Explanation:
Since water at the bottom of the lake is under pressure by all the water molecules above it plus atmospheric pressure. It is no doubt that the pressure at the bottom of the lake is larger than pressure in the middle and at the surface of the lake.
Answer: The loop's right side approaches you.
a. True
b. False
The answer is false because it is called an anticline.
the answer is false