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weqwewe [10]
3 years ago
13

Suppose a particle moves back and forth along a straight line with velocity v(t), measured in feet per second, and acceleration

a(t). What is the meaning of ^120∫60 |v(t)| dt?
Physics
1 answer:
astraxan [27]3 years ago
7 0

Answer:

The meaning of the integral (120, 60)∫ |v(t)| dt is simply the distance covered by the particle from time t = 60 seconds to time t = 120 seconds

Explanation:

We are told that the particle moves back and forth along a straight line with velocity v(t).

Now, velocity is the rate of change of distance with time. Thus, the integral of velocity of a particle with respect to time will simply be the distance covered by the particle.

Thus, the meaning of the integral (120, 60)∫ |v(t)| dt is simply the distance covered by the particle from time t = 60 seconds to time t = 120 seconds

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90 kgkg ice skater moving at 10.0 m/sm/s on the ice encounters a region of roughed up ice with a coefficient of kinetic friction
pychu [463]

Answer:

12.43m

Explanation:

information we know:

mass:

m=90kg

initial velocity:

v_{i}=10m/s

coefficient of kinetic friction:

\mu=0.41

with this information we use Newton's second law:

F=ma

where F is the force acting on the person, and a is its acceleration.

analyzing the forces acting the vertical axis y:

N-mg=ma

where N is the normal force and -mg is the weight of the person (weight and normal force are the only two forces acting on the vertical axis)

since the person is not moving up or down there is no acceleration in the y axis (a=0):

N-mg=0\\N=mg

and now analyzing the forces acting on the horizontal axis x (using Newton's second law):

F=ma

the only horizontal force on the person is the fricction, so:

-F_{fr}=ma

where -F_{fr} is the force due to friction (negative because it opposes the movement) and it is defined as:

F_{fr}=\mu N

and since we know that N=mg:

F_{fr}=\mu mg

thus the second law for the horizontal movement is:

-\mu mg=ma\\-\mu g=a

substituting \mu=0.41 and  g=9.81m/s^2

a=-(0.41)(9.81m/s^2)\\a=-4.0221m/s^2

and then we use the following  kinematic equation :

v_{f}^2=v_{i}^2+2ax

to find the displacement x of the ice skater, since the final velocity is equal to zero  (vf=0 , because the ice skaters stops), we get

0=v_{i}^2+2ax\\v_{i}^2=-2ax\\\frac{v_{i}^2}{-2a}=x

and we substitute the known values:

\frac{(10m/s)^2}{-2(-4.0221m/s^2)}=x\\ 12.43m=x

the answer is 12.43m

3 0
3 years ago
Name at least two other viruses that are at all time lows due to vaccines.
hammer [34]
Flu and chicken pox
5 0
3 years ago
The electrons attraction to the nucleus is called _________. electrostatic field electrostatic attraction electrostatic force po
AlladinOne [14]

Answer: Electrostatic force of attraction

Explanation: Electrostatic force of attraction is the force of attraction or repulsion between two electrically charged particles at rest. Like charges repel and unlike charges attract each other.

8 0
4 years ago
What is the momentum of a 12 kg condor flying at 6 m/s?
rusak2 [61]

Answer:

72

Explanation:

Formula

p=mv\\=12*6\\=72

5 0
4 years ago
Eli and Andy want to find out which of the two is stronger. Eli pushes a table with a force of 120 newtons while Andy pushes the
Sliva [168]

Answer:

B.  0.50 meters/second^2

Explanation:

Given:

  • mass of table (m) = 10.0 kg
  • Eli's force (F1) = 120 N
  • Andy's force (F2) = -125 N

Arranging Formulas and Substituting Values, Part 1:

  • F = F1 + F2
  • F = 120 + (-125)
  • F = -5 N
  • The -5 means that the table will move along the direction of the force applied by Andy.

Arranging Formulas and Substituting Values, Part 2:

  • m * a = F
  • a = F / M
  • a = -5 / 10.0 kg
  • a = -0.5 m/s^2
3 0
3 years ago
Read 2 more answers
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