f(x) = 102; 9(1) = 1 + 3
Answer:
9=4
Step-by-step explanation:
9(1)= 1+3
9(1)=9
1+3=4
9:4
A. <
B. =
C. >
2. Compare the fraction.
4/7 (?) 1/6
A. >
B. =
C. <
D. cannot be compared
B. 5, 10, 2
C. 5, 2, 5, 2
D. 5, 2, 2, 5
Answer:
Use the factor tree to find the prime factorization of 100.
A factor tree of 100. 100 branches to 10 and 10. Both tens branch to 2 and 5.
What is the prime factorization of 100?
2 × 5
2 × 2 × 5 × 5
2 × 5 × 10
10 × 10
Step-by-step explanation:
smh.. people really keep getting it wrong and its B i took the test
Answer:
Step-by-step explanation:
The volume of a right circular cone is given by the formula,
where is the height of the cone.
We can deduce the radius from the circumference of the cone.
It was given that the circumference is 8.3 in.
The volume of the cone now becomes;
The volume of the cone to the nearest tenth is 35.4 cubic inches to the nearest tenth.
By calculating the radius from the given circumference, we can find the volume of a right circular cone with the height of 19.4 inches and a base with a circumference of 8.3 inches to be 33.3 cubic inches.
To calculate the volume of a right circular cone, we need to know the radius, r, and the height, h.
The formula to find the volume, V, of a cone is V = 1/3*π*r²*h.
Given that the height, h, is 19.4 inches, we need to find the radius.
Since the given circumference, C, is 8.3 inches and the formula for circumference is 2*π*r, we can calculate the radius. Solving 8.3 inches = 2*π*r for r gives us r≈1.3 inches.
Then, inserting the values of r and h in the volume formula gives V = 1/3*π*(1.3)²*19.4≈ 33.3 cubic inches.
Rounding to the nearest tenth gives the volume as approximately 33.3 in³.
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