The distance between the points 46 and 73 can be calculated using the expression |73 - 46|. This simplifies to |27|, which equals 27. Thus, the distance between the points is 27 units.
73
1
It depends what "x" is. ======== An algebraic expression representing the difference (subtraction) between 6 and some unknown number (represented by x).
'Difference' is a mathmetical expression for subtraction. 7 #Hence 270 - 108 = 162 (The difference).
One is the additive inverse of the other.
The distance between the points 46 and 73 can be calculated using the expression |73 - 46|. This simplifies to |27|, which equals 27. Thus, the distance between the points is 27 units.
73
1
This is simple subtraction to get the answer in millimetres. 20-10 gives you 10mm of a distance between both. You can simplify this answer by stating that this is also equal to 1 centimetre.
It depends what "x" is. ======== An algebraic expression representing the difference (subtraction) between 6 and some unknown number (represented by x).
'Difference' is a mathmetical expression for subtraction. 7 #Hence 270 - 108 = 162 (The difference).
The relationship between division and subtraction is :Division is repeated subtraction. Also, multiplication is repeated addition.
It is known as BIDMAS (UK) or PEMDAS (US) BIDMAS = Brackets, Index, Division, Multiplication, Addition, Subtraction. or PEMDAS = Parentheses, Exponent, Multiplication, Division, Addition, Subtraction. There is no porder between DM/MD and between AS: Division and multiplication are to be carried out left to right. Addition and subtraction are to be carried out left to right.
Distance = (9-5)2+(-6-1)2 = 65 and the square root of this is the distance between the points which is about 8.062257748
The mathematical expression for the Coulomb potential is V k q1 q2 / r, where V is the potential energy, k is the Coulomb constant, q1 and q2 are the charges of the particles, and r is the distance between them. This expression describes how the potential energy changes as the distance between the charged particles changes. The potential energy decreases as the distance between the particles increases, indicating a weaker interaction, and increases as the distance decreases, indicating a stronger interaction.
The expression for the separation distance between the slits in a double-slit experiment where light waves interfere with each other is typically denoted by the symbol "d."