3 points which do not all lie on the same line.
Two distinct (different) points are needed to determine a line.
Three
A plane is defined by at least three non-collinear points. While an infinite number of points can exist within a plane, the minimum requirement to determine a unique plane is three points that do not all lie on the same straight line.
A plane can be determined by three points, as long as the three points do not lie along a single line.
2
Two distinct (different) points are needed to determine a line.
Three
A plane is defined by at least three non-collinear points. While an infinite number of points can exist within a plane, the minimum requirement to determine a unique plane is three points that do not all lie on the same straight line.
In order to draw a straight line, two unique ordered pairs are needed. This is because two unique points determine a line and an ordered pair represents a point.
A plane can be determined by three points, as long as the three points do not lie along a single line.
To determine the minimum number of bits needed to store 100 letters and symbols, we first need to consider the total number of unique characters. Assuming we use the standard ASCII set, which includes 128 characters (letters, digits, and symbols), we can represent each character with 7 bits. Therefore, to store 100 characters, we would need a minimum of 700 bits (100 characters × 7 bits per character). However, if a larger character set like UTF-8 is used, it may require more bits for some characters.
To determine if bank account numbers are unique, you can compare each account number to all existing account numbers in the database. If there are no duplicates, then the account numbers are unique.
2
The minimum unique array sum that can be achieved is when all elements in the array are different, resulting in the sum of the array being equal to the sum of the first n natural numbers, which is n(n1)/2.
Three non-collinear points do not determine a unique spherical triangle.
The threshold frequency for a material can be determined by conducting experiments to measure the minimum frequency of light that can cause the emission of electrons from the material's surface. This frequency is unique to each material and is a key factor in understanding its photoelectric properties.
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