ou have two strings of different masses. The linear mass density (µ = m/L) of the more massive string is 50% greater than the less dense one (µH = 1.50µL). You clamp both strings at either end with the same amount of tension and would like them to play the same fundamental frequency. If the less massive string is 50 cm long, how long should you make the more massive string
ou have two strings of different masses. The linear mass density (µ = m/L) of the more massive string is 50% greater than the less dense one (µH = 1.50µL). You clamp both strings at either end with the same amount of tension and would like them to play the same fundamental frequency. If the less massive string is 50 cm long, how long should you make the more massive string
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You have two strings of different masses. The linear mass density (µ = m/L) of the more massive string is 50% greater than the less dense one (µH = 1.50µL). You clamp both strings at either end with the same amount of tension and would like them to play the same fundamental frequency. If the less massive string is 50 cm long, how long should you make the more massive string
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