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noname [10]
3 years ago
6

Which of the following has longest wavelength, a) blue light b)red light c)x-rays d)gamma rays ?

Physics
1 answer:
prisoha [69]3 years ago
6 0
Not sure .sorry I just don't understand.
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Compare a wave that has a period of 0.03 second with a second wave that has a period of 1⁄4 second. Which wave has the greater f
yaroslaw [1]

Answer:

The wave with 0.03 time period have the greater frequency

Explanation:

Given in the question,

Period T_{1} of one wave = 0.03 seconds

Period T_{2} of another wave = 1/4 seconds

We know that

T = 1 / f

So,

f_{1} = 33.3 hz

f_{2} = 4 hz

The wave with 0.03 time period have the greater frequency.

4 0
4 years ago
Read 2 more answers
if you put something like apiece of cardboard between a magnet and a iron nail, the magnet still holds the nail. how?
AlekseyPX
Magnetic fields can go through some materials (like cardboard). Electric fields can also do that. Electromagnetic waves can do that. It’s not at all unusual because magnetic fields are not made up of particles so they can go through materials.
8 0
4 years ago
Hi Hi. How are you all?
kap26 [50]

Answer:

Amazing Thanks. What about u?

Explanation:

7 0
3 years ago
Read 2 more answers
If the torque required to loosen a nut that holds a wheel on a car has a magnitude of 55 n·m, what force must be exerted at the
erastova [34]

Either 175 N or 157 N depending upon how the value of 48° was measured from.    
You didn't mention if the angle of 48° is from the lug wrench itself, or if it's from the normal to the lug wrench. So I'll solve for both cases and you'll need to select the desired answer.    
Since we need a torque of 55 N·m to loosen the nut and our lug wrench is 0.47 m long, that means that we need 55 N·m / 0.47 m = 117 N of usefully applied force in order to loosen the nut. This figure will be used for both possible angles.    
Ideally, the force will have a 0° degree difference from the normal and 100% of the force will be usefully applied. Any value greater than 0° will have the exerted force reduced by the cosine of the angle from the normal. Hence the term "cosine loss".     
If the angle of 48° is from the normal to the lug wrench, the usefully applied power will be:  
U = F*cos(48)  
where  
U = Useful force  
F = Force applied    
So solving for F and calculating gives:  
U = F*cos(48)  
U/cos(48) = F  
117 N/0.669130606 = F  
174.8537563 N = F    
So 175 Newtons of force is required in this situation.    
If the 48° is from the lug wrench itself, that means that the force is 90° - 48° = 42° from the normal. So doing the calculation again (this time from where we started plugging in values) we get  
U/cos(42) = F  
117/0.743144825 = F  
157.4390294 = F    
Or 157 Newtons is required for this case.
6 0
3 years ago
Wants to slide his 430g water bottle precisely 12m to land inside a Bull's Eye! If the coefficient of kinetic friction between t
AleksAgata [21]

Answer:

Ff = u M g    frictional force where u = .62

1/2 M v^2    kinetic energy of water bottle at release

Ff * d = 1/2 M v^2 = u M g d   work to stop equals initial kinetic energy

v^2 = 2 u g d = 2 * .62 * 9.8 * 12 = 146 m^2 / s^2

v = 12.1 m/s

3 0
3 years ago
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