There is no solution to:
4(2x + 2) + 12 > 1004(2x + 2) + 12 > 100
For 4(2x + 2) + 12 > 1004(2x + 2) + 12 to have a solution x < -1 which makes 1004(2x + 2) + 12 < 12, BUT 1004(2x + 2) + 12 is supposed to be greater than 100.
Perhaps there is a missing operator in the digits of 1004?
108 remainder 3 :D
The total is 400.
456 plus 100 is equal to 556
100 + 100 = 200
100+0=100
It is not possible to answer the question since the inequality symbol cannot be viewed.
13
The inequality ( x^2 < 100 ) can be solved by first taking the square root of both sides, giving ( -10 < x < 10 ). Thus, the solution is the interval ( (-10, 10) ). This means that any value of ( x ) within this range will satisfy the inequality.
What is the number of integral solution to x plus y plus z equals 100?
The solution of an inequality is USUALLY a range of numbers. Here are some examples that include the number 13:x >= 13x > 0x < 100
Some symbols not visible. Please resubmit using words eg "plus", "equals" etc
100 + 0.08N = 50 + 0.16N100 - 50 = 0.16N - 0.08N50 = 0.08NN = 50/0.08N = 625
The question contains an algebraic expression. It is not an equation (or inequality) and so cannot be solved.
60
1 part of solution A plus 99 parts solution B
There is no integer solution. Quadratic formula gives x = -17.66 or 5.66
108 remainder 3 :D