refractor: start of new concept. Will now also incorporate "Chinese 0 rule" and fractions
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@ -43,7 +43,7 @@ def to_chinese_numeral(n):
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else:
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else:
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is_negative = False
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is_negative = False
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# Put single digits in list
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"""# Put single digits in list
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split_number = [int(x) for x in str(n)]
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split_number = [int(x) for x in str(n)]
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arranged_number = []
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arranged_number = []
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@ -56,9 +56,9 @@ def to_chinese_numeral(n):
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arranged_number.pop(-1)
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arranged_number.pop(-1)
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if is_negative:
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if is_negative:
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arranged_number.append("-")
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arranged_number.insert(0, "-")"""
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return arranged_number
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return is_negative
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print(to_chinese_numeral(-90909)) # 9 10000 9
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print(to_chinese_numeral(-90909)) # 9 10000 9
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