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  2. Charles Ponzi - Wikipedia

    en.wikipedia.org/wiki/Charles_Ponzi

    1⁄2 years before facing state charge) 1920–1922; 9 years state 1927–1934; deportation in 1934. Charles Ponzi ( / ˈpɒnzi /, Italian: [ˈpontsi]; born Carlo Pietro Giovanni Guglielmo Tebaldo Ponzi; March 3, 1882 – January 18, 1949) was an Italian swindler and con artist who operated in the U.S. and Canada. His aliases included Charles ...

  3. These insulated mugs will 'keep coffee hot longer' — and they ...

    www.aol.com/lifestyle/these-insulated-mugs-will...

    At over 40% off, the JoyJolt Savor Double Wall Insulated Glasses are a great buy. They come in a pack of two for only $19.95, making them a little over $9 each. (Similar mugs from Sur La Table ...

  4. 77 best discounts for ages 50+: Where to save money for ... - AOL

    www.aol.com/finance/best-senior-discounts...

    Read the fine print before you pick a rental company, and make sure they take your discount off the base rate for maximum savings. Ages 50 and older. Hertz — 20% off base rate. Sixt — 5% ...

  5. 50% Off - Wikipedia

    en.wikipedia.org/wiki/50%_Off

    50% Off. " 50% Off " is the second episode of the fifth season of the AMC television series Better Call Saul, a spin-off series of Breaking Bad. The episode aired on February 24, 2020, on AMC, in the United States. Outside of the United States, the episode premiered on the streaming service Netflix in several countries.

  6. 68–95–99.7 rule - Wikipedia

    en.wikipedia.org/wiki/68–95–99.7_rule

    In statistics, the 68–95–99.7 rule, also known as the empirical rule, and sometimes abbreviated 3ss, is a shorthand used to remember the percentage of values that lie within an interval estimate in a normal distribution: 68%, 95%, and 99.7% of the values lie within one, two, and three standard deviations of the mean, respectively.

  7. Coupon collector's problem - Wikipedia

    en.wikipedia.org/wiki/Coupon_collector's_problem

    Coupon collector's problem. In probability theory, the coupon collector's problem refers to mathematical analysis of "collect all coupons and win" contests. It asks the following question: If each box of a brand of cereals contains a coupon, and there are n different types of coupons, what is the probability that more than t boxes need to be ...

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