Answer:
The magnitude of the force is 124.23 N.
Explanation:
To known the magnitude of the force is necessary to find the acceleration, that can be done by means of the equations for a a Uniformly Accelerated Motion:
(1)
Where is the final velocity, is the initial velocity, a is the acceleration and t is the time.
(2)
(3)
By replacing (2) in equation (3) it is gotten:
Therefore, by subtracting the first and third term ( ⇒ ) it is got:
Applying common factor for :
(4)
Equation (4) can be rewritten in terms of t:
By knowing the time is possible to determine the acceleration by means of equation (2):
The magnitude of the force exerted by the person on the block can be determine by means of Newton's second law:
(5)
Hence, the magnitude of the force is 124.23 N.
b. radiation.
c. conduction.
d. density.
Heattransfer within a fluid takes place by convectioncurrents. The correct option is a.
Convection currents are principally responsible for heat transmission within a fluid. Heat is transferred through the fluid's own movement through convection.
Heat causes a fluid's particles to gain energy and lose density, which causes them to rise. Heat energy is carried upward by the heated fluid.
A cycle of circulationresults from the movement of colder fluid from the surroundings into its place in the interim.
Through this mechanism, heat can be moved from hotter to cooler areas of the fluid. Convectioncurrents are frequently seen in fluids like air and liquids, and they're important for both engineering and a variety of natural occurrences.
Thus, the correct option is a.
For more details regarding Convection currents, visit:
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Answer:
the answer is A. convection currents
Explanation:Convection currents transfer heat from one place to another by mass motion of a fluid such as water, air or molten rock. The heat transfer function of convection currents drives the earth’s ocean currents, atmospheric weather and geology. Convection is different from conduction, which is a transfer of heat between substances in direct contact with each other.
hopes this helps yall
Answer:
a) F = 20 N
b) m = 1.39 kg
c) f = 1.909 Hz
Explanation:
Given
E = 1 J
A = 0.1 m
vmax = 1.2 m/s
a) F = ?
b) m = ?
c) f = ?
Solution
a) We apply the equation
E = 0.5*k*A²
then
k = 2*E/A²
k = 2*1 J/(0.1 m)²
k = 200 N/m
then we use the equation
F = kA
F = (200 N/m)(0.1 m)
F = 20 N
b) We use the formula
E = K + U
if U = 0 J
then
E = K = 0.5*m*v²
⇒ m = 2*K/v²
m = 2*1 J/(1.2 m/s)²
m = 1.39 kg
c) we apply the equation
f = (1/2π)√(k/m)
then
f = (1/2π)√(200 N/m/1.39 kg)
f = 1.909 Hz
Answer:
a), b), c)
Explanation:
a) The maximum speed of the oscillating block-spring system is:
The angular frequency is:
The mass of the system is:
The spring constant is:
b) The mass is:
c) The frequency of oscillation is:
mechanical waves?
(1) Both types of waves travel at the same speed.
(2) Both types of waves require a material medium
for propagation.
(3) Both types of waves propagate in a vacuum.
(4) Both types of waves transfer energy.
Answer: The correct answer is (4).
Explanation:
Electromagnetic wave is the transverse wave. It is produced by the moving charged particle. It travels at the speed of the light. It does not require a medium to travel. It can travel through the vacuum.
In mechanical wave, there is an oscillation of matter. It requires a medium to travel.It cannot travel through vacuum. The three types of mechanical waves are longitudinal wave, transverse wave and surface wave.
The common characteristics to all electromagnetic waves and mechanical waves are both can move through matter and both can occur as a result of a disturbance. This disturbance is a result of wave transfer energy.
Therefore, the common characteristic to all electromagnetic and mechanical waves is both types of waves transfer energy.