1answer.
Ask question
Login Signup
Ask question
All categories
  • English
  • Mathematics
  • Social Studies
  • Business
  • History
  • Health
  • Geography
  • Biology
  • Physics
  • Chemistry
  • Computers and Technology
  • Arts
  • World Languages
  • Spanish
  • French
  • German
  • Advanced Placement (AP)
  • SAT
  • Medicine
  • Law
  • Engineering
JulsSmile [24]
3 years ago
14

Calcula el trabajo que realiza la fuerza de fregamiento sobre un cuerpo de 13kg que es desplaza una distáncia de 46 m si el coef

iciente de fregamiento entre las superficies es de 0,45
Physics
1 answer:
ZanzabumX [31]3 years ago
3 0

Answer:

Los datos que tienes son:

m = 13 kg

d = 46 m

∪ = 0,45

g = 9,8 m/s²

Fr = ? 

w = ? 

Lo primero que haremos que calcular Fr

Fr = ∪mg

Fr = (0,45) (13 kg) (9,8 m/s²)

Fr = 57,33 N

Calculamos el trabajo realizado.

w = Fd

w = (57,33 N) (46 m)

w = 2637,18 Joules

Respuesta.

El trabajo realizado es 2637,18 Joules

Explanation:

You might be interested in
You have finger tips but you dont have toe tips but you can tip toe explain pls
Arada [10]

Answer:

ummmmmmmm

Explanation:

this might be some type of trick question bro lol

or someone tryna play with you if the teacher gave you this question bro she deserves to be fired

4 0
3 years ago
Which term describes a test that scientist use to answer a question?
antoniya [11.8K]
The scientific method?
8 0
4 years ago
The older, geocentric model of the solar system placed the__________ at the center. Today's heliocentric model places the_______
DedPeter [7]

the answer is earth for the first one and sun for the second one

3 0
3 years ago
Read 2 more answers
A gymnast is in a tucked position to complete her somersaults. While tucked her moment of inertia about an axis through the cent
torisob [31]

Answer:

\omega_s=12.8886\ rad.s^{-1}

Explanation:

Given that:

  • moment of inertia of tucked body, I_t=16\ kg.m^2
  • rotational speed of the body, N_t=2.5\ rev.s^{-1}
  • i.e. \omega_t=2\pi\times 2.5=15.708\ rad.s^{-1}
  • moment of inertia of  the straightened body, I_s=19.5\ kg.m^2

<u>Now using the law of conservation of angular momentum:</u>

angular momentum of tucked body=angular momentum of straight body

I_t.\omega_t=I_s.\omega_s

16\times 15.708=19.5\times \omega_s

\omega_s=12.8886\ rad.s^{-1}

8 0
3 years ago
How much gravitational potential energy does an object have if it is located 20 m above the point that we define as O height and
raketka [301]

Answer:

Explanation:

PE = mgh where m is the mass in kg, g is the pull of gravity which is 9.8, and h is the height of the object above the point to which it could possibly fall, measured in meters. Plugging in:

PE = 10(9.8)(20) so

PE = 1960 J

This should be rounded to 1 sig fig according to the rules of sig fig and your numbers here, but I imagine you're not following them all that much. It should be 2000 J

8 0
3 years ago
Other questions:
  • Cold feedwater enters a 200-kPa open feedwater heater of a regenerative Rankine cycle at 70°C with a flow rate of 10 kg/s. Bleed
    13·1 answer
  • Selective serotonin reuptake inhibitors began appearing in the
    13·1 answer
  • At what point in its motion is the kinetic energy of the end of a pendulum greatest? At what point is its potential energy great
    9·2 answers
  • In an electrically heated home, the temperature of the ground in contact with a concrete basement wall is 10.7 °C. The temperatu
    15·1 answer
  • A disk of radius R (Fig. P25.73) has a nonuniform surface charge density s 5 Cr, where C is a constant and r is measured from th
    6·1 answer
  • Joseph drove for 3 hours at the speed of 40 km/h (kilometers per hour) . He changed his speed to 65 km/h for the next 2 hours. H
    5·1 answer
  • A dog walks 26m, East, 29m, West, and 7m, East. What is his displacement?
    6·1 answer
  • Plz help
    12·2 answers
  • Lou’s latest invention, aimed at urban dog owners, is the X-R-Leash. It is made of a rubber-like material that exerts a force Fx
    6·1 answer
  • A 15.0 kg box is hung from the ceiling by one rope. What is the tension on the rope?
    9·1 answer
Add answer
Login
Not registered? Fast signup
Signup
Login Signup
Ask question!