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sergij07
1 month ago
10

The first digit in any number must be 1, 2, 3, 4, 5, 6, 7, 8, or 9 because we do not write numbers such as 15 as 015. While it i

s reasonable to think that for most real-life data each digit occurs with equal frequency so that each digit 1, 2, ..., 9 has probability 1/9 of being the first digit, this is not true. It is a surprising phenomenon that in many naturally occurring numbers and web-based data the first digit has a probability distribution known as Benford's law.
Benford's law, also called the first-digit law, states that in lists of numbers from many (but not all) real-life sources of data, the leading digit is distributed in a specific, non-uniform way.
Specifically, for d = 1, 2, 3, 4, 5, 6, 7, 8, 9, Benford's law states P(first digit is d) = log_10(1+(1/d)) . The distribution of the first digit according to Benford's law, calculated to 3 decimal places, is shown in the table below.
Benford's law
First Digit X 1 2 3 4 5 6 7 8 9
Probability .301 .176 .125 .097 .079 .067 .058 .051 .046
Benford's Law and the Equally Likely Model benford equally likely
The law is named after physicist Frank Benford, who stated it in 1938, although it had been previously stated by Simon Newcomb in 1881. A surprising variety of data from the natural sciences, social affairs, and business obeys Benford's law.
This result has been found to apply to a wide variety of data sets, including electricity bills, street addresses, stock prices, population numbers, death rates, lengths of rivers, physical and mathematical constants, and processes described by power laws (which are very common in nature).
Numbers that are assigned, such as social security numbers and zip codes, or data with a fixed maximum, such as deductible contributions to individual retirement accounts, or randomly generated numbers, do not follow Benford's law.
The figure below shows how the distribution of the first digit of various naturally occurring and web-based data compares with Benford's law.
benford natural data web data
Figure information. Earthquakes: depth in km of 248,915 quakes, 1989-2009; source National Earthquake Information Center, United States Geological Survey. Minnesota lakes: size in acres of approx. 1100 lakes; source Wikipedia. Births: number of births in each county of the United States (approximately 3200), 2010; source: US Census Bureau. Diggs: total number of diggs for each of the top 1000 diggers at digg.com; source: socialblade.com.
Question 1:
(1a). What is the expected value of the first digit when the first digit follows Benford's law?
expected value (Use 3 decimal places).
(1b). What is the expected value of the first digit when the possible first digits are equally likely?
expected value (Use 3 decimal places).
(1c). What is the standard deviation of the first digit when the first digit follows Benford's Law?
Mathematics
1 answer:
lawyer [12.5K]1 month ago
4 0

Answer:

143, I believe

Step-by-step explanation:

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The standard form of the equation that represents the number of quarters, q, and the number of dimes, d, that austin has in his
AnnZ [12381]
5q + 2d = 270
To determine the intercepts, start by setting d to 0, then to find q. The conditions yield:
5q = 270
q = 54; (0, 54)
2d = 270
d = 135; (135, 0)
This equation illustrates the total number of coins in the piggy bank. For (0, 54), this indicates the quantity of quarters when dimes are absent, while (0, 135) displays the number of dimes when there are no quarters.
3 0
27 days ago
Read 2 more answers
Diego's club earns money for charity when members of the club perform community service after school,
babunello [11817]

Answer: Indeed, because the input value ranges from 0 to 12.

Step-by-step explanation:

To address this query, we first need to formulate a function that reflects the situation.

Every student engaging in community service earns the club $5

E(s) = 5 s

Where:

  • E= total earnings
  • n = number of students participating in community services (input value)

Indeed, since the input value n indicates how many students from the club engage in community service, and with the total number of students being 12, the input can indeed vary between 0 and 12.

6 0
1 month ago
A person is standing 50 ft from a statue. The person looks up at an angle of elevation of 8o when staring at the top of the stat
lawyer [12517]

Answer:

h=50.25\ ft

Step-by-step explanation:

Right Triangles

In a right triangle, one angle measures 90°. This forms a hypotenuse, which is the longest side, alongside two short sides known as legs. These elements are connected to Pythagoras's theorem, and the fundamental trigonometric relationships also apply, including

\displaystyle tan\alpha=\frac{a}{c}

where a represents the leg opposite \alpha and c denotes the adjacent leg.

In this scenario, a statue is observed by a person positioned 50 ft away. The observer looks upwards at an elevation angle of 8° towards the statue's top and then downwards at a 14° angle toward the statue's base. The illustration below depicts the situation.

The statue's height is expressed as h=a+b, where

a=50tan8^o

b=50tan14^o

Therefore,

h=50tan8^o+50tan14^o

h=50(tan8^o+tan14^o)

\boxed{h=50.25\ ft}

5 0
1 month ago
Bhavik bought 333 liters of milk and 555 loaves of bread for a total of \$11$11dollar sign, 11. A month later, he bought 444 lit
Leona [12618]

Assuming the cost of 1 liter of milk is x$

and the cost of 1 loaf of bread is y$

Based on the information provided

the equations are 333x + 555y = 11

and 444x + 444y = 10

By subtracting these expressions,

we derive

(333x + 555y = 11) * 444

(444x + 444y = 10) * 333

(-)     (-)         (-)

147852x + 246420y = 4884

147852x + 147852y = 3330

(-)            (-)                  (-)

------------------------------                   

 98568y = 1554     

           y = 1554/98568     

              = 0.0157$          

                 = 0.02$    

Cost of 1 loaf of bread is 2 cents    

Substituting the value of y back in

333x + 555*0.0157 = 11333x  + 8.7135 = 11333x = 2.2865x = 2.2865/333x = 0.00068$   = 0.01$

Cost of 1 liter of milk = 1 cent

1.5


6 0
22 days ago
John always wears a shirt, pants, socks, and shoes. He owns 121212 pairs of socks, 333 pairs of shoes, 555 pairs of pants, and 5
Zina [12379]
If you're referring to the number of outfit combinations John can create, he has 12 sock pairs he can wear with any of his 3 shoe pairs, 5 pant options, and 5 shirts. In total, there are 12 ways to choose socks, 3 for shoes, 5 for pants, and another 5 for shirts, leading to 12 * 3 * 5 * 5 = 900 combinations.
5 0
19 days ago
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