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Gala2k [10]
3 years ago
9

Help meeee pleaseeee​

Physics
2 answers:
True [87]3 years ago
7 0

Hydrolysis, oxidation and carbonation are all under chemical weathering

Therefore; frost wedging is a type of physical weathering

soldier1979 [14.2K]3 years ago
6 0

Carbonation, Hydrolysis and Oxidation all relates to chemical reactions with the rocks - so these are forms of Chemical weathering

Frost wedging is where the rocks and earth is broken apart by water freezing and turning to ice. It has nothing to do with rocks themselves changing in their chemical composition. So this is a type of physical weathering.

------------------------------------------------------

Answer:

<u>Frost wedging</u> is a type of physical weathering.

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miss Akunina [59]

Answer:

0.07756 m

Explanation:

Given mass of object =0.20 kg

spring constant = 120 n/m

maximum speed = 1.9 m/sec

We have to find the amplitude of the motion

We know that maximum speed of the object when it is in harmonic motion is given by v_{max}=A\omega where A is amplitude and \omega is angular velocity

Angular velocity is given by \omega=\sqrt{\frac{k}{m}}  where k is spring constant and m is mass

So v_{max}=A\sqrt{\frac{k}{m}}

A=V_{max}\sqrt{\frac{m}{k}}=1.9\times \sqrt{\frac{0.2}{120}}=0.07756 \ m

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3 years ago
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A m 23 3.3 32 m 0.37

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3 years ago
A bungee jumper of mass 75kg is attached to a bungee cord of length L=35m. She walks off a platform (with no initial speed), reac
attashe74 [19]

Answer:

1. 77.31 N/m

2. 26.2 m/s

3. increase

Explanation:

1. According to the law of energy conservation, when she jumps from the bridge to the point of maximum stretch, her potential energy would be converted to elastics energy. Her kinetic energy at both of those points are 0 as speed at those points are 0.

Let g = 9.8 m/s2. And the point where the bungee ropes are stretched to maximum be ground 0 for potential energy. We have the following energy conservation equation

E_P = E_E

mgh = kx^2/2

where m = 75 kg is the mass of the jumper, h = 72 m is the vertical height from the jumping point to the lowest point, k (N/m) is the spring constant and x = 72 - 35 = 37 m is the length that the cord is stretched

75*9.8*72 = 37^2k/2

k = (75*9.8*72*2)/37^2 = 77.31 N/m

2. At 35 m below the platform, the cord isn't stretched, so there isn't any elastics energy, only potential energy converted to kinetics energy. This time let's use the 35m point as ground 0 for potential energy

mv^2/2 = mgH

where H = 35m this time due to the height difference between the jumping point and the point 35m below the platform

v^2/2 = gH

v = \sqrt{2gH} = \sqrt{2*9.8*35} = 26.2 m/s

3. If she jumps from her platform with a velocity, then her starting kinetic energy is no longer 0. The energy conservation equation would then be

E_P + E_k = E_E

So the elastics energy would increase, which would lengthen the maximum displacement of the cord

5 0
4 years ago
Clouds, wind, and rain are part of the _____.
Musya8 [376]
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8 0
3 years ago
A 1500-kg car doubles its speed from 50 km/h to 100 km/h. By how many times does the kinetic energy from the car's forward motio
Marat540 [252]

Answer:

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Explanation:

Given,

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The kinetic energy at 50 Km/h

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                                       = ½ x 1500 x 50²

                                       = 1875000 J

The kinetic energy of the car at 100 Km/h

                               K.E = ½mv²

                                     = ½ x 1500 x 100²

                                     = 7500000 J

Hence, the final K.E is 4 times the initial K.E

6 0
4 years ago
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