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It was the first product released in the JumpStart series and, as its name suggests, it is intended to teach kindergarten students. According to the Knowledge Adventure founder Bill Gross, it is the first educational software program that covers the entire kindergarten curriculum. [1] It was ported to the Windows and Macintosh systems in 1995 ...
JumpStart 1st Grade (3rd), JumpStart Adventures 3rd Grade (4th), JumpStart 2nd Grade (5th), JumpStart Kindergarten II (6th), JumpStart Preschool (7th), JumpStart Adventures Fourth Grade (8th), JumpStart Toddlers were within the top-selling educational software across 13 U.S. software retail chains in the week ending September 19, 1998. [35]
JumpStart Preschool is a 1995 educational video game and third installment of the JumpStart franchise by Knowledge Adventure, after JumpStart Kindergarten (1994) and JumpStart 1st Grade (1995). It would later be re-released as JumpStart Preschool on August 26, 1998 and superseded by a new title JumpStart Advanced Preschool in 2002.
The pictures on the right show how to calculate 345 × 12 using lattice multiplication. As a more complicated example, consider the picture below displaying the computation of 23,958,233 multiplied by 5,830 (multiplier); the result is 139,676,498,390. Notice 23,958,233 is along the top of the lattice and 5,830 is along the right side.
The multiplicative order of a number a modulo n is the order of a in the multiplicative group whose elements are the residues modulo n of the numbers coprime to n, and whose group operation is multiplication modulo n. This is the group of units of the ring Z n; it has φ(n) elements, φ being Euler's totient function, and is denoted as U(n) or ...
Four bags with three marbles per bag gives twelve marbles (4 × 3 = 12). Multiplication can also be thought of as scaling. Here, 2 is being multiplied by 3 using scaling, giving 6 as a result. Animation for the multiplication 2 × 3 = 6 4 × 5 = 20. The large rectangle is made up of 20 squares, each 1 unit by 1 unit.