What is the Electric Current Produced by Solar Wind Protons Near Earth?

In summary, the solar wind that streams off the sun at a speed of 400 km/s contains roughly equal numbers of electrons and protons. Near the Earth, a cube with a side length of 1 m contains approximately 8.7 * 10^6 protons with a velocity of 470 km/s. By considering the movement of these protons, we can find the electric current produced by the flow through a cross-sectional area of 1 m^2, which is equal to 6.6 * 10^(-7). While the solar wind may not directly affect the current, it is important to consider its composition when solving this problem.
  • #1
Physicsrapper
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Homework Statement


Here is the Task:
The solar wind streams off of the sun in all directions at Speeds of about 400 km/s.
It contains roughly equal number of electrons and Protons.
Near the Earth we find in a cube with a side length of 1 m about 8.7 * 10^6 Protons. The velocity of These Protons is 470 km/s.

Find the electric current produced by the flow of These Protons through a cross-sectional area of 1 m^2.


Homework Equations


The solution should be: 6.6 * 10^(-7)



The Attempt at a Solution


I really don't have an idea how to integrate the solar wind into my equation.
Why is

(8.7 * 10^6 * 1m^2 * (1.6 * 10^(-19)) / 470 000 m/s

wrong?

What has the solar wind to do with that cube?
Can someone please help me and give me some tips?

Thanks in advance!
 
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  • #2
I don't have a clue on how to treat the solar wind. If "It contains roughly equal number of electrons and Protons" then it should be electrically neuter, so it would not affect the current in any way.

However I arrived to the solution you mention without considering the wind. Here is how I see it: if we have 8.7 · 10^6 Protons in a 1m² cube then we have [itex]8.7 · 10^6 \frac{protons}{m}[/itex] (note: longitudinal meter here).

If the protons are moving at 470 Km/s, or 470 000 m/s then we have:

[itex] 1.6 · 10 ^{-19} \frac{Coulombs}{proton} \times 8.7 · 10^6 \frac{protons}{m}\times 470 000 \frac{m}{s} = 6.5424 · 10^{-7} Coulombs[/itex]

Which agrees with your solution.
 
  • #3
Now I understood. Thank you very much for your help.
 

Related to What is the Electric Current Produced by Solar Wind Protons Near Earth?

What is electric current?

Electric current is the flow of electric charge, typically measured in amperes (A). It is the rate at which electric charges pass through a given point in a circuit.

How do you calculate electric current?

To calculate electric current, you can use the formula I = Q/t, where I is the current in amperes, Q is the charge in coulombs, and t is the time in seconds. Alternatively, you can use the formula I = V/R, where V is the voltage in volts and R is the resistance in ohms.

What is the difference between AC and DC current?

AC (alternating current) is a type of electric current where the direction of the flow of charge periodically changes, while DC (direct current) is a type of electric current where the direction of the flow of charge remains constant. AC is commonly used for power distribution, while DC is commonly used in batteries and electronic devices.

What factors affect the flow of electric current?

The flow of electric current can be affected by several factors, including the voltage applied, the resistance of the circuit, the temperature of the conductors, and the length and thickness of the conductors. Other factors like the type of material and the presence of magnetic fields can also affect the flow of electric current.

Why is it important to calculate electric current?

Calculating electric current is important because it allows us to understand and predict the behavior of electric circuits. It also helps us to design and optimize electrical systems and ensure they are operating safely and efficiently. Additionally, knowing the electric current is necessary for determining the amount of power being used and for troubleshooting any issues that may arise in a circuit.

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