Answer:
1,809.98 lb*m/s^2
Step-by-step explanation:
First, we want to know how much weight of the boulder is projected along the path in which the boulder can move.
The weight of the boulder is:
W = 322lb*9.8 m/s^2 = (3,155.6 lb*m/s^2)
This weight has a direction that is vertical, pointing downwards.
Now, we know that the angle of the hill is 35°
The angle that makes the direction of the weight and this angle, is:
(90° - 35°)
(A rough sketch of this situation can be seen in the image below)
Then we need to project the weight over this direction, and that will be given by:
P = W*cos(90° - 35°) = (3,155.6 lb*m/s^2)*cos(55°) = 1,809.98 lb*m/s^2
This is the force that Samuel needs to exert on the boulder if he wants the boulder to not roll down.
Answer:
2 B 4/75
3 B 1/7
Step-by-step explanation:
4 red, 3 blue, 2 yellow, 6 orange
total = 15
2. P(red) = red/total = 4/15
replace it
so we still have 4 red, 3 blue, 2 yellow, 6 orange
total = 15
P(blue) = blue/total = 3/15 = 1/5
P(red, replace, blue) = 4/15 * 1/5 = 4/75
3 P(orange) = orange/total = 6/15 = 2/5
not replacing it
so we have 4 red, 3 blue, 2 yellow, 5 orange
total = 14
P(orange) = orange/total = 5/14
P(orange, no replace, orange) = 2/5*5/14 = 2/14 = 1/7
42 divided by 7 is is 6 hope this helps
First you find P which would be 16+17+17 which equals 50. Then you find B which is 1/2•16•15 which equals 120. Next you write the formula which would look like 50(20)+2(120) which equals 1240!