The simplest fraction form of 0.333 will be 333/1000 .
Given,
Decimal form: 0.333
Now,
To convert decimal form into fraction form,
When the decimals are to be removed from the decimal form we divide the number by 10 , 100 , 1000 depending on the place of decimal .
Here the decimal is placed after 3 places from right side .
Thus the division will be done of 1000 .
So,
0.333 = 333/1000
333/1000 is the simplest form as it can not be reduced further .
Thus the simplest form in fraction is 333/ 1000 .
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The graph of the new function compared with the first one is the graph would be shifted upward.
In algebra, an equation can be defined as a mathematical statement consisting of an equal symbol between two algebraic expressions that have the same value.
The given equations are;
y = x - 6
y = x + 8
To compare the equation substitute the value of x = 0 and solving for the value of y.
y = x - 6
x = 0
y = 0 -6
y = -6
And y = x + 8
y = 0 + 8
y = 8
So the function would be shifted upward.
Hence, the graph of the new function compared with the first one is the graph would be shifted upward.
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Answer:
Step-by-step explanation:
When we talk about percentages, we refer to that amount, which, proportionally, refers to a part of the total. In this sense, the total amount of muffins would equal 100%. And we need to find what is the percentage of the amount of blueberry muffins, so:
Let:
Using cross-multiplication we can find the what percent of the muffins are blueberry:
Solving for
Answer:
7/9
Step-by-step explanation:
- 8x + 10
Write your answer as two ordered pairs:
(x1, y1), (×2, y2)
Separate the values with a comma.
Round, if
necessary, to the nearest hundredth.
Answer:
To find the x-intercepts of the parabola defined by the equation y = 2x² - 8x + 10, you need to set y equal to zero (because x-intercepts occur when y is zero) and solve for x.
So, you have:
0 = 2x² - 8x + 10
Now, you can use the quadratic formula to solve for x:
x = (-b ± √(b² - 4ac)) / (2a)
In this equation, a = 2, b = -8, and c = 10. Plug these values into the formula:
x = (-(-8) ± √((-8)² - 4 * 2 * 10)) / (2 * 2)
x = (8 ± √(64 - 80)) / 4
x = (8 ± √(-16)) / 4
Since the discriminant (the value inside the square root) is negative, there are no real solutions, which means this parabola does not have x-intercepts in the real number system.
So, there are no ordered pairs (x1, y1) and (x2, y2) for x-intercepts because there are no x-intercepts for this parabola in the real number system.
Step-by-step explanation:
Certainly, let's find the x-intercepts step by step for the equation:
y = 2x² - 8x + 10
Step 1: Set y to zero because x-intercepts occur when y equals zero:
0 = 2x² - 8x + 10
Step 2: Now, we want to solve this equation for x. We can use the quadratic formula:
x = (-b ± √(b² - 4ac)) / (2a)
In this formula:
a is the coefficient of the x² term (which is 2 in this case).
b is the coefficient of the x term (which is -8).
c is the constant term (which is 10).
Step 3: Plug the values of a, b, and c into the formula:
x = (-(-8) ± √((-8)² - 4 * 2 * 10)) / (2 * 2)
Step 4: Simplify the equation inside the square root:
x = (8 ± √(64 - 80)) / 4
x = (8 ± √(-16)) / 4
Step 5: Now, notice that we have a square root of a negative number (√(-16)). In the real number system, we can't take the square root of a negative number. This means there are no real solutions for x.
Step 6: Since there are no real solutions, there are no x-intercepts for this parabola in the real number system. Therefore, there are no ordered pairs (x1, y1) and (x2, y2) for x-intercepts in this case.
log(x–4)+log(x+3)=2logx