Answer:
x = -7/5
Step-by-step explanation:
3(x – 6) – 8x = –2 + 5(2x + 1)
Distribute
3x-18 -8x = -2 +10x+5
Combine like terms
-5x-18 = 10x+3
Add 5x to each side
-5x+5x-18 = 10x+5x+3
-18 = 15x+3
Subtract 3 from each side
-18-3 = 15x+3-3
-21 = 15x
Divide by 15
-21/15 =15x/15
-7/5 =x
The value of t based on the information about the sphere is 1.3π.
<h3>How to calculate the value?</h3>
It should be noted that the volume of a sphere is 4/3πr³. In this case, it's divided into 8 equal parts.
Volume of each part = 1/8 × 4/3πr³
= 1/8 × 4/3 × π × 8
= 4/3π
= 1.3πin³
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Answer:
LC = 1
General Formulas and Concepts:
<u>Algebra I</u>
- Leading Coefficient - the coefficient for the largest degree variable
Step-by-step explanation:
<u>Step 1: Define</u>
x¹⁰ + 29x⁴ + x² + 8
<u>Step 2: Identify</u>
Largest degree: 10 (from x¹⁰)
Leading Coefficient: 1
Answer:
<u>x = 14</u>
Step-by-step explanation:
4x + (2x + 6) = 90
6x + 6 = 90
subtract both sides by 6:
6x + 6 <em>- 6 </em>=<em> </em>90 <em>- 6</em>
6x = 84
divide both sides by 6
6x/6 = 84/6
x = 14
double check:
4*14 + (2*14 + 6) = 90
56 + 28 + 6 = 90
Have a nice day!
Answer:
I solved part a
To solve this question, we need to solve an exponential equation, which we do applying the natural logarithm to both sides of the equation, getting that it will take 7.6 years for for 21 of the trees to become infected.
PART C
The logarithmic model is: g(x)= in x/0.4
We are given an exponential function, for the amount of infected trees f(x) after x years.To find the amount years needed for the number of infected trees to reach x, we find the inverse function, applying the natural logarithm.
Step-by-step explanation:
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