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Yuri [45]
1 year ago
7

Absolute value of 3+i

Mathematics
1 answer:
Serggg [28]1 year ago
4 0

Answer:

3+i

Step-by-step explanation:

|3+i| is just 3+i because it is already positive.

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Explorer 35's orbit measured 11,400 kilometers across its long dimension. What was the orbit's semimajor axis in kilometers?a. 5
Aleksandr [31]

Answer:

option (a)

Step-by-step explanation:

Length of long dimension = 11400 km

It means it is the length of major axis.

So, the length of semi major axis = 11400 / 2 = 5700 km

Thus, the length of semi major axis is 5700 km.

6 0
3 years ago
The graphs below have the same shape. What is the equation of the graph of g(x)?
USPshnik [31]

Answer:

Step-by-step explanation:

B. Because adding 2 moves you to the left when inside the parentheses.

7 0
3 years ago
Write the if/else statement as the conditional expression that performs the same option result = x < y ? x * 5 : a b;
Semenov [28]

The conditional statement is

if x < y:

  result = x * 5

<h3>How to write the if/else statement as the conditional expression that performs the same option?</h3>

The statement is given as:

result = x < y ? x * 5

The above means that,

the variable result is assigned  x * 5 if x < y

So, the conditional statement is

if x < y:

  result = x * 5

Read more about conditional statement at

brainly.com/question/11073037

#SPJ4

8 0
2 years ago
A jar made of 3/16-inch-thick glass has an inside radius of 3.00 inches and a total height of 6.00 inches (including the bottom
steposvetlana [31]
We can calculate the volume of a glass shell of the jar by calculating the total volume of a jar and then subtract the volume of air that fits in the jar (the space bounded by the shell).
The total volume of the jar is:
V_t=Bh=\pi h(r+a)^2
Where h is the height of the jar, a is the thickness and r is the inner radius.
The volume of empty space, bounded by the jar, is:
V_e=B(h-a)=\pi r^2(h-a)
The volume of a jar shell is the difference between these two:
V_s=V_t-V_e=\pi h(r+a)^2-\pi r^2(h-a)
When we plug in all the number we get:
V_s=27.17 {$in}^3
The weight of the jar is simply its volume times its density. We have to convert density of the glass:
165 \frac{lb}{ft^3}=\frac{165}{1728}\frac{lb}{in^3}=0.0949\frac{lb}{in^3}
Now we can find the mass:
m_j=V_s\rho_j=27.17\cdot 0.0949=2.58 $lb
The volume of water jar would displace depends how far the jar would sink.
There two forces acting on the jar when you put in the water. The first one is gravity and it's pulling the jar down. The second force is the buoyancy the and this force pushes the jar upward. In order for that jar to be stable, these two forces must be the same.
The buoyancy is given with this formula:
B=\rho gV_{disp}
The volume of water that would be displaced by the jar can be expressed by this formula:
V_{disp}=\pi h'(r+a)^2
Where h' is the height of the jar that is submerged in the water.
So the buoyancy force is:
B=\rho_w g\pi h'(r+a)^2
This force must be equal to the force of gravity acting on the jar: 
F_g=B\\ m_jg=\rho_w g\pi h'(r+a)^2\\ m_j=\rho_w \pi h'(r+a)^2\\
We solve for h':
h'=\frac{m_j}{\rho_w \pi(r+a)^2}
If we plug in the number we get:
h'=2.24 $in
Now we can calcuate the amount of water discplaced and its mas(keep in mind that we also converted density of water into lb/in^3):
V_{disp}=\pi h'(r+a)^2=71.50${in}^3\\&#10;m_v=\rho_w\cdot V_{disp}=2.58$lb
We get the same mass as the mass of the jar, which makes perfect sense:
m_jg=\rho_w V_{disp}g\\&#10;m_j=m_{wdisp}



4 0
4 years ago
Find the sum of the 1st 100 terms: 100+98+96+......
allsm [11]

Answer:

5000

Step-by-step explanation:

100 × 50

5000

7 0
3 years ago
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