Answer:
They both rises to same height.
Explanation:
When an object is sliding up in friction less surface than according to conservation of energy its potential energy will be converted into kinetic energy.
Here, m is the mass, v is the velocity, g is the acceleration due to gravity and H is the height.
Here the height is independent on the mass of an object and its only depend on velocity.
Now according to the question, two objects have same velocity but they have different masses.
Therefore, they rises to the same height because height will not change with mass.
Let's recall Kinetic Energy Formula as follows:
Ek = Kinetic Energy ( Joule )
m = mass of the object ( kg )
v = speed of the object ( m/s )
Let us now tackle the problem !
Given:
initial speed of first object = initial speed of second object = v
final speed of first object = final speed of second object = 0
mass of first object = m
mass of second object = 2m
Asked:
height = H = ?
Solution:
We will use Conservation of Energy to solve this problem:
Both objects rise to the same height
Grade: High School
Subject: Physics
Chapter: Energy
-Kayla lifts 15kg weights up at a velocity of 2.6m/s
0
Which friend is creating more momentum?
Answer:
Kayla. You can calculate it using the formula for momentum: momentum=mass×velocity and find the bigger number between the two momentums
b. month . . . day
c. year . . . month
d. year . . . day
The Earth rotates on its axis every __day________ and revolves around the Sun every _____year_____.
Rotation refer to an object's spinning motion about its own axis
Revolution refers to the object's orbital motion around another object
The earth rotates on its axis 23 hours, 56 minutes and 4 seconds which is approximately equal to one day whereas the earth revolve around sun in 365 days , 6hours , 9minutes which is nearly equal to an year.
Hence , correct option is a) day . . . year
learn more about rotation and revolution of earth:
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Answer:
well i just needed the achievement
Explanation:
B) The current in the four bulbs is much less than the current in three bulbs.
C) The current in each bulb remained the same even though another bulb was added.
D) The current in the fourth bulb is less than the current int he other three bulbs.
Since all the bulbs are connected in parallel with each other
so here voltage across each bulb will remains the same
so here we will have
now all bulbs are identical and we have same voltage source across all the bulbs
so we will have current in each bulb given by same equation
now we can say that correct answer will be
C) The current in each bulb remained the same even though another bulb was added.
The answer is C) The current in each bulb remained the same even though another bulb was added.
If a girl with a mass of 40 kg is swinging from a rope with a length of 2.5 m , then the frequency of her swinging is 0.32 Hz
Simple Harmonic Motion is a motion where the magnitude of acceleration is directly proportional to the magnitude of the displacement but in the opposite direction.
The pulled and then released spring is one of the examples of Simple Harmonic Motion. We can use the following formula to find the period of this spring.
T = Periode of Spring ( second )
m = Load Mass ( kg )
k = Spring Constant ( N / m )
The pendulum which moves back and forth is also an example of Simple Harmonic Motion. We can use the following formula to find the period of this pendulum.
T = Periode of Pendulum ( second )
L = Length of Pendulum ( kg )
g = Gravitational Acceleration ( m/s² )
Let us now tackle the problem !
Given:
Mass of A Girl = m = 40 kg
Length of Rope = L = 2.5 m
Gravitational Acceleration = g = 10 m/s²
Unknown:
Frequency of Swinging = f = ?
Solution:
Recall the formula for calculating period as mentioned above.
Finally, we can calculate the magnitude of frequency with the following formula.
Grade: High School
Subject: Physics
Chapter: Simple Harmonic Motion
Keywords: Simple , Harmonic , Motion , Pendulum , Spring , Period , Frequency
B. low enough to combine
C. low enough to overcome
D. equal to
E. great enough to overcome
Answer: E. great enough to overcome.
Explanation: The three phases of the substances are solid, liquid and gas.
When a substance is heated, that is the molecules gain kinetic energy as kinetic energy is directly proportional to temperature.
The phase change will take place only when kinetic energy will be greater than the inter molecular forces as the molecules have to move in more random motion.
For example: Solid with high inter molecular forces are heated to convert it into liquid state only when kinetic energy will overcome the inter molecular forces of attraction.