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kozerog [31]
4 years ago
11

A Maga Patalójika roubou a a moeda número um do Tio Patinhas e fugiu em sua vassoura com velocidade de 40m/s. Qual a distância p

ercorrida após 2min?
Physics
1 answer:
stepan [7]4 years ago
5 0

Answer:

thfhfnf

Explanation:

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Modern oil tankers weigh over a half-million tons and have lengths of up to one-fourth mile. Such massive ships require a distan
sergiy2304 [10]

(a) -1.46\cdot 10^{-4} m/s^2

The average acceleration of the ship is given by

a=\frac{v-u}{t}

where

v is the final velocity

u is the initial velocity

t is the time elapsed

Here we have:

u=34 km/h =9.44 m/s is the initial velocity

v = 0 is the final velocity

t=18 min =64800 s is the time elapsed

Substituting, we find

a=\frac{0-9.44 m/s}{64800 s}=-1.46\cdot 10^{-4} m/s^2

(b) 4.72 m/s

Assuming the acceleration is uniform, the average velocity of the ship is given by:

v_{avg} = \frac{v+u}{2}

where

v is the final velocity

u is the initial velocity

Here we have:

v = 0

u = 9.44 m/s

So the average velocity of the ship is

v_{avg} = \frac{0+9.44 m/s}{2}=4.72 m/s

6 0
4 years ago
Which list correctly identifies each particle?
LuckyWell [14K]

Answer:

x represents an electron and y represents a proton and a neutron.

Explanation:

electrons are the smallest particle in an atom and protons and neutrons are a lot larger. thats why only protons and neutrons are weighed in atomic mass. electrons are too small to make a difference in the atom's weight.

5 0
3 years ago
Read 2 more answers
Write the differential equation that governs the motion of the damped mass-spring system, and find the solution that satisfies t
melisa1 [442]

This question is incomplete, the complete question  is;

Write the differential equation that governs the motion of the damped mass-spring system, and find the solution that satisfies the initial conditions specified. Units are mks; γ is the damping coefficient, with units of kg/sec

m = 0.2, γ = 1.6 and k = 4

Initial displacement is 1 and initial velocity is -2

x" + _____ x' ____x = 0

x(t) =

Answer:

the solution that satisfies the initial conditions specified is;

x(t) = c_1e^{-4t}cos(2t) + c_2e^{-4t}sin(2t)

Explanation:

Given the data in the question ;

m = 0.2, γ = 1.6, k = 4

x(0) = 1, x'(0) = -2

Now, the differential equation that governs the motions of spring mass system is;

mx" + γx' + kx = 0

so we substitute

0.2x" + 1.6x' + 4x = 0

divide through by 0.2

x" + 8x' + 20x = 0

hence, characteristics equation will be;

m² + 8m + 20 = 0

we find m using; x = [ -b±√(b² - 4ac) ] / 2a

m = [ -8 ± √((8)² - 4(1 × 20 )) ] / 2(1)

m = [ -8 ± √( 64 - 80 ) ] / 2

m = [ -8 ± √-16 ) ] / 2

m = ( -8 ± 4i ) / 2

m = -4 ± 2i

Hence, the general solution of the differential equation is;

x(t) = c_1e^{-4t}cos(2t) + c_2e^{-4t}sin(2t)

From the initial conditions;

c₁ = 1, c₂ = 1

the solution that satisfies the initial conditions specified is;

x(t) = c_1e^{-4t}cos(2t) + c_2e^{-4t}sin(2t)

6 0
3 years ago
What would have the greatest gravitational pull on each other?
denpristay [2]

Answer:

Jupiter

Characteristics of a Dwarf Planet

One of Sir Isaac Newton's accomplishments established that the gravitational force between two bodies is proportional to their masses. All other things being equal, the planet with the strongest pull is the one with the largest mass, which is Jupiter.

5 0
3 years ago
Which terms describe the motion of most objects in our solar system?
olga2289 [7]

Answer:Geography, Earth Science, Astronomy

Rotation describes the circular motion of an object around its center.

Explanation:

6 0
3 years ago
Read 2 more answers
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