The force that must be applied to stop the SUV in 8 seconds is approximately 3,487.5 Newtons (N).
To calculate the force required to stop the SUV, we can use Newton's second law of motion, which states that force (F) is equal to mass (m) times acceleration (a). In this case, the acceleration is the change in velocity over time.
First, let's find the acceleration (a):
Acceleration (a) = (final velocity - initial velocity) / time
a = (0 m/s - 18 m/s) / 8 s
a = -18 m/s / 8 s
a = -2.25 m/s²
The negative sign indicates that the SUV is decelerating or slowing down.
Now, we have the acceleration (-2.25 m/s²) and the mass of the SUV (1,550 kg). We can use Newton's second law to find the force:
Force (F) = mass (m) x acceleration (a)
F = 1,550 kg x (-2.25 m/s²)
F = -3,487.5 N
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Answer:
diameter ≅ 3 inches
Explanation:
Use a constant factor, k
Let Hp = horsepower
Let s = speed in rpm
Let d = diameter in inches
to find constant k, using
Hp=46
S=100
d=3 in
To find diameter when;
Hp=74
S=175
k=0.017
d=d inches
d≅ 3 inches
B. frequency.
C. wavelength.
D. velocity.
I believe it is velocity
b. destructive interference
c. standing wave formation
d. constructive interference
Answer: The correct answer is destructive interference.
Explanation:
Interference is the phenomenon in which there is a superposition of the waves. If the amplitude of the resultant wave is more than the original wave then there will be constructive interference.
If the amplitude of the resultant wave is lower than the original wave then there will be destructive interference.
Suppose two waves collide and the temporary combined wave that results is smaller than the original waves.
Therefore, the correct option is b.