Answer:
afafasfafd shfgjsuhd shdfhsdfghn isndfhusudhfuh nsu
Step-by-step explanation:
dsfshdfh jishudfnhuj hudsnfhjnshjdnf nsjndfjnsdhjnf jhsdnjfhnsdhjnf usndfhsndhjfnshjn jshbndfjhsednfjhn ddhn hshhdfhdsh hhjis ndfjnsd ndfsjhnfh jinse hdfj sihdfhisnhnsd nsdfnshuidfhisdfhjsihjdfnihjsdhfsdj hdhshi dhsdhfsdh dhujishisdfuyhsdhujnghjigihjsdghnsdih huiedsnfghjixhui dyun9y un9sguyhsdyhugnsdghjigsngnih hunxcvhjio nidjnxcgyhui
Answer:
Step-by-step explanation:
(2(6) - 3(10)^2)/(|6 - 10)|
(12 - 300)/|-4|
-288/4 = -72
answer is c
Answer:
F
Step-by-step explanation:
Answer:
Step-by-step explanation:
4
Answer:
3676.44 rad/min
Step-by-step explanation:
It is a problem about the angular speed of the car's wheel.
You can calculate the angular speed by using the following formula, which relates the tangential speed of the wheels (the same as the speed of the car) with the angular speed:
( 1 )
v: speed of the car = tangential speed of the wheels = 47mph
r: radius of the wheels = 27/2 in = 13.5 in
you change the units of the speed:

next, you replace the values of v and r in the equation (1):

Then, the car's tires are turning with an angular speed of 3676.44 rad/min