Water Eject: Eject Water from Phone's Speakers using sound

Why 165 Hz is the best for water ejection?

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When it comes to ejecting water from your phone using sound, you may have heard that a specific frequency, such as 165 Hz, is believed to be effective. In this blog post, we will explore the reasoning behind this claim and why 165 Hz audio noise is often considered the best for water ejection.

Understanding the Science Behind Water Ejection

Before we delve into the specifics of 165 Hz audio noise, let’s understand the science behind water ejection using sound. When a phone comes into contact with water, it can become trapped in various areas, such as the speaker grill, charging port, or microphone opening. Most of modern phones is water resistant so essentially there is nothing to worry. We can just use gravity to and wait for water to leave the port.

When sound waves pass through water, they create vibrations that can displace the trapped water droplets. The goal is to generate sound at a frequency that resonates with the water molecules, causing them to vibrate and eventually dislodge from the phone’s internal components.

Why 165 Hz?

The frequency of 165 Hz is often recommended for water ejection because it falls within the range of frequencies that are believed to have the most effective resonance with water molecules. This resonance occurs when the frequency matches the natural vibrational frequency of the water molecules, causing them to vibrate more vigorously.

At 165 Hz, the sound waves can create strong vibrations within the water droplets, helping to break the surface tension and dislodge them from the phone’s components. This specific frequency is thought to generate the optimal amount of energy to facilitate water ejection without causing any harm to the phone or its internal parts.

Experimentation and Caution

The use of audio noise for water ejection is still an area of ongoing research and experimentation. Different frequencies may yield varying results depending on the specific circumstances. It’s essential to proceed with caution and understand the potential risks involved.

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