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Ganezh [65]
4 years ago
8

EXPAND » A bag contains 6 red marbles and 4 blue marbles. Ralph randomly draws a marble from the bag, notes its color, and then

replaces the marble in the bag. He remixes the marbles and repeats the process until he draws a blue marble. What is the probability this takes Ralph more than 3 draws?
Mathematics
1 answer:
Luda [366]4 years ago
7 0
The probability is 40%
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Here is the histogram of a data distribution. All class widths are 1.
vaieri [72.5K]
The answer is 7 because the mean is an average. So if you add up all the numbers and then divide that number by the amount of numbers listed then that will get you your answer which is 7

4+5+6+7+8+9+10=49
49/7=7
4 0
3 years ago
Algebra 2 please help
kogti [31]

Answer:

Here's what I get  

Step-by-step explanation:

a) Possible degree

This  looks like the graph of a cubic equation.

ƒ(x) could be a third degree function.

b) Sign of leading coefficient

As x ⟶ ∞, ƒ(x) ⟶ ∞.

The leading coefficient must be positive.

c) Coordinates of maxima and minima

There is a local maximum at (-4, 0) and a local minimum at about (-1, -18.).

d) Coordinates of zeros

There are zeros at (-4, 0) and (1, 0).

e) Increasing and decreasing intervals

ƒ(x) is increasing in the intervals (-∞, -4) and (-1, ∞).

ƒ(x) is decreasing in the interval (-4, -1).

f) Negative intervals

The graph is negative in the intervals (-∞, -4) and (-4, ∞).

g) Possible factored form of equation

A cubic equation must have three roots. This function has a root at x = 1. Another is at x = -4. That root just touches the x-axis, so it must be degenerate (occur twice).

The factored form of the equation is

ƒ(x) = (x - 1)(x + 4)(x + 4)

h) End behaviour

ƒ(x) ⟶ -∞ as x ⟶ -∞ and ƒ(x) ⟶ ∞ as x ⟶ ∞ .

5 0
4 years ago
1] If 221ₓ= 25₁₀ find X<br> 2] if 3ₓ + 34ₓ - 40ₓ = 0 find x<br> 3] if 23ₓ = 1111₂ find x
Olin [163]

1.

2\cdot x^2+2\cdot x^1+1\cdot x^0=25\\2x^2+2x+1=25\\2x^2+2x-24=0\\x^2+x-12=0\\x^2+4x-3x-12=0\\x(x+4)-3(x+4)=0\\(x-3)(x+4)=0\\x=3 \vee x=-4

The base can't be negative, therefore x=3.

2.

3\cdot x^0+3\cdot x^1+4\cdot x^0-4\cdot x^1+0\cdot x^0=0\\3+3x+4-4x=0\\x=7

3.

2\cdot x^1+3\cdotx^0=1\cdot 2^3+1\cdot2^2+1\cdot2^1+1\cdot2^0\\2x+1=8+4+2+1\\2x=14\\x=7

5 0
2 years ago
What does Point P on the number line represent? (Use the hyphen for negative numbers,
IrinaK [193]

P EQUALS NEGATIVE NINE(9)

7 0
3 years ago
The blood platelet counts of a group of women have a bell-shaped distribution with a mean of 257.62 and a standard deviation of
Effectus [21]

Answer:

(a) Approximately 68 % of women in this group have platelet counts within 1 standard deviation of the mean, or between 195.5 and 319.7.

(b) Approximately 99.7% of women in this group have platelet counts between 71.3 and 443.9.

Step-by-step explanation:

We are given that the blood platelet counts of a group of women have a bell-shaped distribution with a mean of 257.62 and a standard deviation of 62.1

Let X = <u><em>the blood platelet counts of a group of women</em></u>

So, X ~ Normal(\mu=257.62, \sigma^{2} =62.1^{2})

Now, the empirical rule states that;

  • 68% of the data values lie within the 1 standard deviation of the mean.
  • 95% of the data values lie within the 2 standard deviations of the mean.
  • 99.7% of the data values lie within the 3 standard deviations of the mean.

(a) The approximate percentage of women with platelet counts within 1 standard deviation of the mean, or between 195.5 and 319.7 is 68% according to the empirical rule.

(b) The approximate percentage of women with platelet counts between 71.3 and 443.9 is given by;

       z-score of 443.9 =  \frac{X-\mu}{\sigma}

                                   =  \frac{443.9-257.62}{62.1}  = 3

       z-score of 71.3 =  \frac{X-\mu}{\sigma}

                                =  \frac{71.3-257.62}{62.1}  = -3

So, approximately 99.7% of women in this group have platelet counts between 71.3 and 443.9.

5 0
3 years ago
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