As per the question, the object is thrown in vertically upward direction.
The initial velocity of the ball [u] = 9 m/s.
We are asked to calculate the velocity of the ball after 2 second.
When the ball goes up, the only force that acts on the ball is the force of gravity.
Hence the acceleration of the ball is nothing else than acceleration due to gravity i.e g and it is downward in direction.
Here, it will be considered negative as it is downward in direction .
From equation of kinematics we know that-
v = u +at [Here v is the final velocity and a is the acceleration.
= 9 +[-9.8]×2 m/s
= 9-19.6
= -10.6 m/s
Here the negative sign indicates that the ball is falling downward. It is coming back after reaching its maximum height.
Here the total time of flight of the ball is-
If the ball is thrown from certain height from the ground, then the velocity of the ball will be the calculated value.
If the ball is thrown from the ground, obviously the ball will heat the ground after 1.8367 seconds later.So the velocity of the ball will be zero after 2 seconds.
Answer:
Explanation:
First of all, we need to find the pressure exerted on the sphere, which is given by:
where
is the atmospheric pressure
is the water density
is the gravitational acceleration
is the depth
Substituting,
The radius of the sphere is r = d/2= 1.1 m/2= 0.55 m
So the total area of the sphere is
And so, the inward force exerted on it is
The total inward force is about 4.1 × 10⁸ N
Let's recall Hydrostatic Pressure formula as follows:
where:
P = hydrosatic pressure ( Pa )
ρ = density of fluid ( kg/m³ )
g = gravitational acceleration ( m/s² )
h = height of a column of liquid ( m )
Let us now tackle the problem!
Given:
depth of the ocean's floor = h = 11 000 m
diameter pilot sphere = d = 1.1 m
atmospheric pressure = Po = 10⁵ Pa
Asked:
total inward force = F = ?
Solution:
→ Area of Sphere = π d²
The total inward force is about 4.1 × 10⁸ N
Grade: High School
Subject: Physics
Chapter: Pressure
Motion can be described in terms of direction, speed, and change. Direction is the course in which the object is moving, speed is the rapidity of the object's movement, and change in motion happens when the speed or direction changes over time.
Motion can be described through three main elements: direction, speed, and change. The direction is the course in which the object is moving, for example, north, south, east, or west in linear motion. The speed is the swift of the object's motion, often calculated in terms such as meters per second, miles per hour etc. Changes in motion, also referred to as acceleration or deceleration, occur when the speed or direction of an object change over a period of time. For an instance, if a car moves from rest and accelerates to 60 miles/hour in 10 seconds, it describes a change in motion.
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I pretty sure that 3 is b and 4 is A and 5 I need a full picture
The wavelength of the sound with a frequency of 100 Hz and a velocity of 250 m/s is 2.5 meters.
You can use the wave equation to find the wavelength of sound:
Wavelength (λ) = Velocity (v) / Frequency (f)
Wavelength (λ) = 250 m/s / 100 Hz = 2.5 meters
So, the wavelength of the sound with a frequency of 100 Hz and a velocity of 250 m/s is 2.5 meters.
Learn more about wavelength at brainly.com/question/10750459
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If you take the data you gave and insert it into the equation f=v/λ the frequency would come out to be 2.5m.