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ZanzabumX [31]
3 years ago
10

Latortugade bisagra de Cuatro Ciénegas habita exclusivamente en las pozas de agua dulce del valle de Cuatro Ciénegas, en el cent

ro del estado deCoahuila.Logra moversecon una rapidez de 0.10 m/s y una liebresilvestrecorre 20 veces más rápido. En una competencia, ambos inician al mismo tiempo, pero la liebre sedetiene a descansar por 2.0 minutos. La tortuga gana por un caparazón (20 cm). A) ¿Cuánto duró la competencia? B) ¿Cuál es la distancia de la carrera?
Physics
1 answer:
Nadusha1986 [10]3 years ago
5 0

Answer:

son 20184 esa es la respuesta

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How are you going to describe the amount of force acting in the given situation?​
NeTakaya

Answer:

fully describe the force acting upon an object, you must describe both the magnitude (size or numerical value) and the direction. ... In contrast, 10 Newton, downward is a complete description of the force acting upon an object; both the magnitude (10 Newton) and the direction (downward) are given.

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PHYSICS QUESTION: specific heat capacity
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1*10*1000=10000 energy= temp change*mass*specific heat capacity
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The current through a 50ohm's resistance is 2A , how much power is dissipated as heat.<br>​
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Answer:

<u>Power</u><u> </u><u>is</u><u> </u><u>5</u><u>0</u><u>0</u><u>0</u><u> </u><u>W</u>

Explanation:

{ \bf{P=I {}^{2} R}}

<em>P</em><em> </em>is power

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8 0
3 years ago
It has been proposed that a spaceship might be propelled in the solar system by radiation pressure, using a large sail made of f
Anestetic [448]

Answer:

A = 8.34 x 10^(5) m²

Explanation:

The intensity of the solar radiation is the average solar power per unit area. Thus,

I = P/4A = P/(4(πr²))

Where;

P is average solar power.

r is it's distance from centre of sun

A is area

Now, The rate at which the Sun emits energy has a standard value of 3.90 × 10^(26) W

Thus;

I = [3.90 × 10^(26)]/(4πr²)

I = [3 x 10^(25)]/r²

Now, the formula for radiation pressure is;

P_rad = 2I/c

Where c is speed of light and has a value of 3 x 10^(8) m/s

Thus,

P_rad = 2([3 x 10^(25)]/r²)/(3 x 10^(8))

P_rad = [2.07 x 10^(17)]/r² N/m²

Also, Radiation pressure on ship; P_rad = F/A

Where Force on ship and A is area.

Thus;

F = P_rad x A

So, F = [2.07 x 10^(17)•A]/r²

Now,

F_grav = GMm/r²

Where;

G is gravitational constant with a value = 6.67 x 10^(-11) Nm²/kg²

M is mass of sun with a value of 1.99 x 10^(30)

m is mass of ship and sail = 1300 kg

Thus, plugging in the relevant values to obtain;

F_grav = (6.67×10^(-11) × 1.99 x 10^(30) × 1300)/r²

F_grav = [17.255 x 10^(22)]/r²

Now, equating F to F_grav, we get;

[2.07 x 10^(17)•A]/r² = [17.255 x 10^(22)]/r²

r² will cancel out to give;

2.07 x 10^(17)•A= [17.255 x 10^(22)]

A = [17.255 x 10^(22)]/2.07 x 10^(17)

A = 8.34 x 10^(5) m²

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