On a piano, a key has a frequency, say fo. Each higher key (black or white) has a frequency of f0 *r", where n is the distance (number of keys) from that key, and r is 2(1/12), Given an initial key frequency, output that frequency and the next 4 higher key frequencies. Output each floating-point value with two digits after the decimal point, which can be achieved as follows: print (f'{your_value1:.2f} {your_value2:.2f} {your_value3:.2f} {your_value4:.2f} {your_value5:.2f}') Ex: If the input is: 440 (which is the A key near the middle of a piano keyboard), the output is: 440.00 466.16 493.88 523.25 554.37 Note: Use one statement to computer = 2(1/12) using the pow function (remember to import the math module). Then use that r in subsequent statements that use the formula fn = f0 *rn with n being 1, 2, 3, and finally 4.
On a piano, a key has a frequency, say fo. Each higher key (black or white) has a frequency of f0 *r", where n is the distance (number of keys) from that key, and r is 2(1/12), Given an initial key frequency, output that frequency and the next 4 higher key frequencies. Output each floating-point value with two digits after the decimal point, which can be achieved as follows: print (f'{your_value1:.2f} {your_value2:.2f} {your_value3:.2f} {your_value4:.2f} {your_value5:.2f}') Ex: If the input is: 440 (which is the A key near the middle of a piano keyboard), the output is: 440.00 466.16 493.88 523.25 554.37 Note: Use one statement to computer = 2(1/12) using the pow function (remember to import the math module). Then use that r in subsequent statements that use the formula fn = f0 *rn with n being 1, 2, 3, and finally 4.
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
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Code in main.py

Transcribed Image Text:On a piano, a key has a frequency, say fo. Each higher key (black or white) has a frequency of fo* r, where n is the distance (number of
keys) from that key, and r is 2(1/12). Given an initial key frequency, output that frequency and the next 4 higher key frequencies.
Output each floating-point value with two digits after the decimal point, which can be achieved as follows:
print (f' {your_value1:.2f} {your_value2:.2f} {your_value3:.2f} {your_value4:.2f} {your_value5:.2f}')
Ex: If the input is:
440
(which is the A key near the middle of a piano keyboard), the output is:
440.00 466.16 493.88 523.25 554.37
Note: Use one statement to computer = 2(1/12) using the pow function (remember to import the math module). Then use that r in
subsequent statements that use the formula fn = f0 *rn with n being 1, 2, 3, and finally 4.
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