Answer:
3.95 m
Explanation:
m = 1 kg, h = 100 m, k = 125 N/m
Let the spring is compressed by y.
Use the conservation of energy
potential energy of the mass is equal to the energy stored in the spring
m x g x h = 1/2 x ky^2
1 x 9.8 x 100 = 0.5 x 125 x y^2
y^2 = 15.68
y = 3.95 m
Answer:
C. Pumping
Explanation:
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Answer: Losing weight due to decreased appetite
Explanation: because you guys trust me
Answer:
-3.396 m/s or 3.465 m/s
Explanation:
v = Speed of sound in air = 343 m/s
= Relative speed of the singer
f = Observed frequency
f' = Actual frequency
1% change can mean
From the Doppler effect equation we have
The velocity is -3.396 m/s
when
The velocity is 3.465 m/s
Answer:
Explanation:
Let the two capacitance are
It is given that when capacitors are connected in parallel their equvilaent capacitance is 9.42 pF
So --------EQN 1
And when they are connected in series their equivalent capacitance is 1.68 pF
So
-----EQN
On solving eqn 1 and eqn 2
Answer:
Point motion will eventually stops due to action of g exactly perpendicular...
Explanation:
If ignoring the air resistance, the magnitude of gravitational acceleration is already strong enough to stops the acceleration. As we know that, the spring constant of a bungee spring cord will be F = -k/x, where x is the stretched length and k is the spring constant of bungee cord. If F = ma = w = mg, the g = -m k/x. Now we can clearly see that the value of g remains constant due to the fluctuating length of the cord as the motion progresses back and forth in SHM say from x1 to x2 and x2 to x1.
Let's take east and west to be positive and negative, respectively, and north and south to be positive and negative, respectively. Then in terms of vectors (using ijk notation), the car first moves 200 km west,
r = (-200 km) j
then 80 km southwest,
s = (-80/√2 km) i + (-80/√2 km) j
so that its total displacement is
r + s = (-80/√2 km) i + ((-200 - 80/√2) km) j
r + s ≈ (-56.6 km) i + (-256.6 km) j
This vector has magnitude
√((-56.6 km)² + (-256.6 km)²) ≈ 262.7 km
and direction θ such that
tan(θ) = (-256.6 km) / (-56.6 km) ==> θ ≈ -102.4º
relative to east, or about 12.4º west of south.
Answer:
The first graph is showing the constant acceleration (1 m/s)
Explanation:
The second graph showing the flexible velocity therefore a in the graph is different at t1, t2, t3, t4
The last graph is showing constant velocity therefore there is no acceleration (a = 0)
Answer:
A
Explanation:
on edge