Answer:1: 36milimeters 2. 3,6 centimeters 3. 5milimeters 4. .5centimeters 5. 50milimeters 6. 5centimeters
Step-by-step explanation:
OA) 62.8 in?
B) 15.7 in?
C) 78.5 in2
125.7 in2
Answer:
Answer: 62.8
Step-by-step explanation: took the test, hope this helps (;
Answer:
14 times c = s
Step-by-step explanation:
Answer:
-294
Step-by-step explanation:
Answer:8192,-65536,524288
Step-by-step explanation:
2,-16,128,-1024,....
First term=a=2
Common ratio=r=-16/2=-8
Using the formula
Tn=a x r^(n-1)
T5=2 x (-8)^(5-1)
T5=2x (-8)^4
T5=2x4096
T5=8192
T6=2x(-8)^(6-1)
T6=2x(-8)^5
T6=2x-32768
T6=-65536
T7=2x(-8)^(7-1)
T7=2x(-8)^6
T7=2x262144
T7=524288
A: Gradient of f
B: Gradient of f at point P:
Just put the coordinates of p in above formula:
C: The directional derivative of f and P in direction of v:
The directional derivative is found by dot product of :
D: The maximum rate of change of f at P is calculated by evaluating the magnitude of gradient vector at P:
E: The (unit) direction vector in which the maximum rate of change occurs at P is:
That vector v is the needed unit vector in this case.
we divided by to make that vector as of unit length.
Learn more about vectors here:
Answer:
a) The gradient of a function is the vector of partial derivatives. Then
b) It's enough evaluate P in the gradient.
c) The directional derivative of f at P in direction of V is the dot produtc of and v.
d) The maximum rate of change of f at P is the magnitude of the gradient vector at P.
e) The maximum rate of change occurs in the direction of the gradient. Then
is the direction vector in which the maximum rate of change occurs at P.