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  2. Discount rate - Wikipedia

    en.wikipedia.org/wiki/Discount_rate

    Discount rate may refer to: Social discount rate (of consumption), the rate at which the weight given to future consumption decreases in economic models. Pure time preference, or utility discount rate, the rate at which the weight given to future utility decreases in economic models. Annual effective discount rate, an alternative measure of ...

  3. Some Americans live in a parallel economy where ... - AOL

    www.aol.com/finance/americans-live-parallel...

    The peak thrust of $6 trillion worth of COVID-related stimulus for consumers and businesses flowed through in 2021. As those programs ended, the “excess savings” that built up while people ...

  4. ASCII - Wikipedia

    en.wikipedia.org/wiki/ASCII

    ASCII ( / ˈæskiː / ⓘ ASS-kee ), [3] : 6 an acronym for American Standard Code for Information Interchange, is a character encoding standard for electronic communication. ASCII codes represent text in computers, telecommunications equipment, and other devices.

  5. Digital coupon - Wikipedia

    en.wikipedia.org/wiki/Digital_coupon

    Digital coupons (also known as e-coupons, e-clips or clipped deals) are the digital analogue of paper coupons which are used to provide customers with discounts or gifts in order to attract the purchase of some products. Mostly, grocery and drug stores offer e-coupon services in loyalty program events. Even though there are still traditional ...

  6. Pluto - Wikipedia

    en.wikipedia.org/wiki/Pluto

    Pluto ( minor-planet designation: 134340 Pluto) is a dwarf planet in the Kuiper belt, a ring of bodies beyond the orbit of Neptune. It is the ninth-largest and tenth-most- massive known object to directly orbit the Sun. It is the largest known trans-Neptunian object by volume, by a small margin, but is less massive than Eris.

  7. Hooke's law - Wikipedia

    en.wikipedia.org/wiki/Hooke's_law

    In physics, Hooke's law is an empirical law which states that the force (F) needed to extend or compress a spring by some distance (x) scales linearly with respect to that distance—that is, F s = kx, where k is a constant factor characteristic of the spring (i.e., its stiffness), and x is small compared to the total possible deformation of the spring.