Answer:
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Step-by-step explanation:
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24 and whose fifth term is 1536
or
The common difference, d , in an arithmetic sequence whose fourth
term is 16 and whose seventh term is 31.
Answer:
The common difference d is larger than the common ratio r
Step-by-step explanation:
Geometric sequence
∵ The second term is 24
∴ = 24
∵
- Equate it by its value
∴ ar = 24 ⇒ (1)
∵ The fifth term is 1536
∴ = 1536
∵
- Equate it by its value
∴ = 1536 ⇒ (2)
Divide (2) by (1)
∴
- Divide up and down by ar
∴ r³ = 64
- Take ∛ for both sides
∴ r = 4
Arithmetic sequence
∵ The fourth term is 16
∴ = 16
∵ = a + (4 - 1)d
∴ = a + 3 d
- Equate it by its value
∴ a + 3d = 16 ⇒ (1)
∵ The seventh term is 31
∴ = 31
∵ = a + (7 - 1)d
∴ = a + 6 d
- Equate it by its value
∴ a + 6 d = 31 ⇒ (2)
Subtract equation (1) from equation (2) to eliminate a and find d
∵ (a - a) + (6 d - 3 d) = (31 - 16)
∴ 3 d = 15
- Divide both sides by 3
∴ d = 5
∵ r = 4 and d = 5
∴ d > r
∴ The common difference d is larger than the common ratio r
pay?
The required value of x is 20.
A proportion is an equation in which two ratios are set equal to each other. In simple words, equivalent fraction are called as proportions.
Now the given equivalent ratios is,
3/12 = 5/x
Cross multiply the ratios we get,
3*x = 5*12
Solve them we obtain,
3x = 60
now dividing both side by 3,
3x/3 = 60/3
Solve them we obtain,
x = 20
So the value of x = 20.
Hence, for equivalent ratios 3/12 and 5/x the valueof x is 20.
To learn more about proportions :
#SPJ2
The definition of complex, real and pure imaginary number is as follows:
The absolute value of this number is given by:
So, the absolute value of a complex number represents the distance between the origin and the point in the complex plane. On the other hand, the absolute value of a real number means only how far a number is from zero without considering any direction.