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  2. Shapiro time delay - Wikipedia

    en.wikipedia.org/wiki/Shapiro_time_delay

    The Shapiro time delay effect, or gravitational time delay effect, is one of the four classic Solar System tests of general relativity. Radar signals passing near a massive object take slightly longer to travel to a target and longer to return than they would if the mass of the object were not present. The time delay is caused by time dilation ...

  3. Ben & Jerry’s is giving away free ice cream cones. Here’s ...

    www.aol.com/news/ben-jerry-giving-away-free...

    The annual free cone day event returns Tuesday, April 16, at participating Ben & Jerry’s scoop shops nationwide from noon until 8 p.m. local time, the Vermont-based creamery said in a news release.

  4. Ben Leber - Wikipedia

    en.wikipedia.org/wiki/Ben_Leber

    Ben Leber (born December 7, 1978) is a former American football linebacker in the National Football League (NFL). He was selected by the San Diego Chargers in the third round of the 2002 NFL Draft and later played for the Minnesota Vikings .

  5. Rami M. Shapiro - Wikipedia

    en.wikipedia.org/wiki/Rami_M._Shapiro

    Rami M. Shapiro (26 April 1951), commonly called "Rabbi Rami", is an American Reform rabbi, author, teacher, and speaker on the subjects liberal Judaism and contemporary spirituality. His Judaism is grounded in the perennial philosophy .

  6. Carl Ben Eielson - Wikipedia

    en.wikipedia.org/wiki/Carl_Ben_Eielson

    Carl Benjamin "Ben" Eielson (July 20, 1897 – November 9, 1929) was an American aviator, bush pilot and explorer. Eielson Air Force Base in Alaska , Carl Ben Eielson Middle School Fargo, ND and Carl Ben Eielson Elementary School Grand Forks, ND as well as Ben Eielson Junior-Senior High School Eielson AFB, AK are named in his honor.

  7. Rudin–Shapiro sequence - Wikipedia

    en.wikipedia.org/wiki/Rudin–Shapiro_sequence

    The Rudin–Shapiro sequence was introduced independently by Golay, Rudin, and Shapiro. The following is a description of Rudin's motivation. In Fourier analysis , one is often concerned with the L 2 {\displaystyle L^{2}} norm of a measurable function f : [ 0 , 2 π ) → [ 0 , 2 π ) {\displaystyle f\colon [0,2\pi )\to [0,2\pi )} .