Answer:B
Step-by-step explanation:
I just tried it and i got a 100
Answer:
b
Step-by-step explanation:
answer the question
Answer:
The answer is: The posts are 160 feet apart.
Step-by-step explanation:
Ramona is counting the posts between mile markers on the highway.
1 mile = 5,280 feet
Its given that in 1 mile or 5280 feet there are 33 posts.
If posts are evenly spaced, then they are feet apart.
(-1, 6)
(-6, -1)
(6, 1)
Answer:
The image of (1,-6) is (-6,-1)
C is correct
Step-by-step explanation:
Given: (1,-6) rotate 270° counterclockwise rotation about the origin.
For 270° counterclockwise rotation about the origin.
(1,-6) lie in IV quadrant.
After 270° counterclockwise rotation about the origin
Point image form in III quadrant.
Hence, The image of (1,-6) is (-6,-1)
A. 3i-4j-2k
B. -14i-9j-4k
C. 5i +3j -4k
D. -4i -14j -9k
Find v x w if v=-3i-4j-8k & w=2i+6j+4k.
A. 12i -2j +3k
B. 8i +12j +32k
C. 32i -4j -10k
D. 10 i -8j +3k
Find the cross product <-6, 7, 2> x <8, 5, -3>. Is the resulting vector perpendicular to the given vectors?
A. <-31,-2,-86>;yes
B. <-37,-2,0>; no
C. <0,-86,-37>; yes
D. <-37, 0, -80>;no
Answer:
The function f(x) has the greatest y-intercept. Option 1 is correct.
Step-by-step explanation:
The first function is
Substitute x=0 in the given function, to find the y-intercept.
The y-intercept of f(x) is 5.
From the given graph it is clear that the y-intercept of g(x) is 2.
The third function is
Substitute x=0 in the given function, to find the y-intercept.
The y-intercept of h(x) is -2.
Therefore the function f(x) has the greatest y-intercept. Option 1 is correct.
The greatest y-intercept in a function refers to the function that intersects the y-axis at the highest point. We can determine this by checking the 'b' term in the equation y = mx + b.
To determine which function has the greatest y-intercept, you would need to examine the 'b' term in the equation y = mx + b, which represents the y-intercept. This is the point where the function intersects the y-axis. In other words, it's the y-value where the function begins. For example, within the information provided, 'ŷ-266.8863 + 0.1656x' seems to have the largest y-intercept at 266.8863.
Now consider having graphs of multiple functions; the one that intersects the y-axis at the highest point (the largest y-value) has the greatest y-intercept.
For straight lines, their slope remains the same along the line (as demonstrated in the mention of 'Figure A1 Slope and the Algebra of Straight Lines'). It's the y-intercept that determines where on the y-axis the line begins, helping us distinguish one line from another if their slopes are identical.
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The linear speed of the object is
The linear speed :
The linear speed of the object is
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