Answer:
x6 − x3 − 20 = (x3)2 − x3 − 20 = (x3 + 4)(x3 − 5)
Step-by-step explanation:
In this trinomial, the exponent of the first term, 6, is double the exponent in the second term, 3. And, the third term contains no variables. So, we can factor the expression as we would a quadratic, but treating x3 as if it were x:
Answer:
(x³ - 5)(x³ + 4)
Step-by-step explanation:
Consider the factors of the constant term (- 20) which sum to give the coefficient of the x³ term (- 1)
The factors are - 5 and + 4, since
- 5 × 4 = - 20 and - 5 + 4 = - 1, hence
- x³ - 20 = (x³ - 5)(x³ + 4)
Hi there! The bills you will use is two $20 bills, one $10 bill, and three $1 bills which exactly 6 bills and is a total of $53.
Hope it Helps :)
Select one:
a. −9
b. −3
c. 3
d. 9
Answer:
3
Step-by-step explanation:
-x = 3 -4x + 6
Add 3 and 6.
-x = -4x + 9 * add 4x to itself and -x
+4x = 4x + 9 * -4x + 4x would cancel out so..
3x = 9 * divide
x = 3
Since 0 = 9 is not true, there is no value of x that satisfies the equation.
To find the value of x in the equation −x = 3 − 4x + 6, we need to isolate the variable x. We can start by combining like terms on the right side of the equation:
Next, we can add x to both sides of the equation to eliminate the -x term:
Since 0 = 9 is not true, there is no value of x that satisfies the equation. Therefore, the answer is None of the above.
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SHOW UR WORK PLEASE!!!
The multiplication of 1,537×242 is 371,954.
Arithmetic operations can also be specified by the addition, subtract, divide, and multiply built-in functions.
+ Addition operation: Adds values on either side of the operator.
For example 4 + 2 = 6
- Subtraction operation: Subtracts the right-hand operand from the left-hand operand.
for example 4 -2 = 2
* Multiplication operation: Multiplies values on either side of the operator
For example 4*2 = 8
/ Division operation: Divides left-hand operand by right-hand operand
For example 4/2 = 2
We have been given that 1,537×242
To determine the multiplication of 1,537×242
⇒ 1,537×242
⇒ 371954
Thus, the multiplication of 1,537×242 is 371,954.
Learn more about Arithmetic operations here:
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Answer:
4 sets.
Step-by-step explanation:
We are asked to find the greatest number of sets you can make using 28 pens and 80 pencils.
To solve our given problem, we will find greatest common factor of 28 and 80.
Factors of 28: 1, 2, 4, 7, 14, 28.
Factors of 80: 1, 2, 4, 5, 8, 10, 16, 20, 40, 80.
We can see that the greatest common factor of 28 and 80 is 4, therefore, you can make at-most 4 sets each having same number of pens and pencils.