As a result of the violent revolts in france in july 1830

Answers

Answer 1

Answer:

As a result of the violent revolts in france in july 1830 gave up the throne and fled for Great Britain.

Explanation:

Following Charles X taking the throne of France, he strengthened the power of the clergy and the monarchy. In 1830, Charles X attempted to suppress the Constitution, suspend Parliament, and shut down the press. The press disobeyed and encouraged mobs to protest. The protests got violent and fearing for his life, Charles X stepped down from the throne and took his family to Great Britain.


Related Questions

Trucks can be run on energy stored in a rotating flywheel, with an electric motor getting the flywheel up to its top speed of 689 rad/s. One such flywheel is a solid, uniform cylinder with a mass of 507 kg and a radius of 1.2 m that rotates about its central axis. What is the kinetic energy of the flywheel after charging

Answers

Answer:

k = 86,646,076.92 J

Explanation:

We know that:

K = [tex]\frac{1}{2}IW^2[/tex]

where K is the kinetic energy, I is the moment of inertia and W is the angular velocity.

First we have to find the I with the equation:

I = [tex]\frac{1}{2}MR^2[/tex]

where M is the mass and R the radius of the cylinder.

so:

I = [tex]\frac{1}{2}(507 kg)(1.2m)^2[/tex]

I = 365.04 kg*m^2

Now we replace all the data in the first equation as:

K = [tex]\frac{1}{2}IW^2[/tex]

K = [tex]\frac{1}{2}(365.04)(689)^2[/tex]

k = 86,646,076.92 J

A wood-burning stove (emissivity = 0.900 and surface area = 3.75 m2) is being used to heat a room. The fire keeps the stove surface at a constant 182 °C (455 K) and the room at a constant 22 °C (295 K). Determine the net radiant power generated by the stove.

Answers

Answer:

Radiated power will be [tex]675241.7175watt[/tex]

Explanation:

We have given emissivity [tex]\epsilon =0.9[/tex]

Stove temperature T = 455 K

Room temperature [tex]T_C=295K[/tex]

We know the Stephan's constant [tex]\sigma =5.67\times 10^{-6}w/m^2K^4[/tex]

We know that radiated power is given by [tex]P=\epsilon \sigma A(T^4-T_C^4)=0.9\times5.67\times 10^{-6}\times  3.75\times (455^4-295^4)=675241.7175watt[/tex]

Final answer:

The net radiant power generated by the wood-burning stove can be determined by using the Stefan-Boltzmann law. This law combines the factors of Stefan-Boltzmann constant, emissivity of the body, surface area, and the difference of the fourth powers of the absolute temperatures.

Explanation:

The rate of radiant power generated by the stove can be found using the Stefan-Boltzmann law, which describes the rate of heat transfer by emitted radiation. This law can be stated as P = σeAT⁴, where P is the radiant power, σ is the Stefan-Boltzmann constant (5.67 × 10⁻⁸ J/s.m².K⁴), e is the emissivity of the body, A is the surface area, and T is the absolute temperature in Kelvins.

For the net rate of heat transfer by radiation (or the net radiant power) for the wood-burning stove, you would use the Stefan-Boltzmann law as Q-net = σeA(T₂⁴ - T₁⁴), where T₂ is the absolute temperature of the stove and T₁ the absolute temperature of the room.

Plugging in the stove's values from the problem: emissivity = 0.900, surface area = 3.75 m², T₂ = 455 K (stove temperature), and T₁ = 295 K (room temperature), we can calculate the net radiant power allocated by the stove.

Learn more about Radiant Power here:

https://brainly.com/question/2179765

#SPJ11

A 340 g bird flying along at 6.0 m/s sees a 13 g insect heading straight toward it with a speed of 30 m/s. The bird opens its mouth wide and enjoys a nice lunch. What is the bird's speed immediately after swallowing?
_____m/s

Answers

Answer:

V = 4.67 m/s

Explanation:

given,

mass of the flying bird (M)= 340 g = 0.34 Kg

Speed of bird(u₁) = 6 m/s

mass of insect(m) = 13 g = 0.013 Kg

speed of insect(u₂) = 30 m/s

Speed of bird after eating the insect(V) =?

Using conservation of momentum

M u₁ + m u₂ = (M+m)V

[tex]V = \dfrac{M u_1+ m u_2}{(M+m)}[/tex]

[tex]V = \dfrac{0.34\times 6 - 0.013 \times 30}{0.34+0.013}[/tex]

[tex]V = \dfrac{1.65}{0.353}[/tex]

V = 4.67 m/s

the bird's speed immediately after swallowing V = 4.67 m/s

The magnitude of the tidal force between the International Space Station (ISS) and a nearby astronaut on a spacewalk is approximately

2GmMa/r3 . In this expression, M is the mass of the Earth, r=6.79×106m is the distance from the center of the Earth to the orbit of the ISS, m=135kg is the mass of the astronaut, and a=13m is the distance from the astronaut to the center of mass of the ISS. Calculate the magnitude of the tidal force for this astronaut. This force tends to separate the astronaut from the ISS if the astronaut is located along the line that connects the center of the Earth with the center of mass of the ISS.

Answers

Answer:

F = 4.47 10⁻⁶ N

Explanation:

The expression they give for the strength of the tide is

      F = 2 G m M a / r³

Where G has a value of 6.67 10⁻¹¹ N m² / kg² and M which is the mass of the Earth is worth 5.98 10²⁴ kg

They ask us to perform the calculation

      F = 2 6.67 10⁻¹¹ 135  5.98 10²⁴ 13 / (6.79 10⁶)³

      F = 4.47 10⁻⁶ N

This force is directed in the single line at the astronaut's mass centers and the space station

Magma forms when solid rock in the crust and upper mantle. True or False

Answers

Answer:

True

Explanation:

Magma is known as melted rock deep within the Earth, normally coming from the melting of the upper mantle or crust.  Magma is formed by the partial melting of the mantle and crust and this can occur in different  ways. One way can be  called heat-transfer melting. Rising magma or rock will bring heat with it, and so can melt the surrounding mantle or crustal rock. For example, magmas generated in the mantle tend to be around 1200 degrees Celsius, whereas the more silicate minerals such as quartz and orthoclase feldspar (common in continental crustal rocks) begin to partially melt at around 650-850 degrees Celsius. Therefore, the crustal rock will begin to partially melt due to the introduction of heat from rising magma. A Another way of melting rock is known as decompression melting. During decompression melting, rock from within the mantle is brought to the surface adiabatically (no exchange of heat or energy with its surroundings) and so the lithostatic pressure decreases. This means that the parcel of rising rock crosses the solidus, and so at this point the thermal vibration of the molecules is no longer counteracted by the lithostatic pressure and the rock begins to partially melt.

Answer:

The answer is true

Explanation:

hope it helps

Mimas, a moon of Saturn, has an orbital radius of 1.62 × 108 m and an orbital period of about 23.21 h. Use Newton’s version of Kepler’s third law and these data to find the mass of Saturn. Answer in units of kg.

Answers

Answer:

[tex]3.60432\times 10^{26}\ kg[/tex]

Explanation:

a = Orbital radius = [tex]1.62\times 10^8\ m[/tex]

T = Orbital period = 23.21 hours

G = Gravitational constant = 6.67 × 10⁻¹¹ m³/kgs²

From Kepler's third law we get

[tex]M=\frac{4\pi^2a^3}{GT^2}\\\Rightarrow M=\frac{4\pi^2\times (1.62\times 10^8)^3}{6.67\times 10^{-11}\times (23.21\times 3600)^2}\\\Rightarrow M=3.60432\times 10^{26}\ kg[/tex]

From the given data the mass of Saturn is [tex]3.60432\times 10^{26}\ kg[/tex]

Final answer:

To find the mass of Saturn, we can use Newton's version of Kepler's third law. Given the orbital radius and period of Saturn's moon Mimas, we can use the equation p² = a³ to calculate the mass of Saturn. Using the provided data, the mass of Saturn is approximately 5.69 x 10^26 kg.

Explanation:

To find the mass of Saturn, we can use Newton's version of Kepler's third law. Kepler's third law states that the square of the orbital period of a planet or moon is proportional to the cube of its semimajor axis. We can use the equation p² = a³ to solve for the mass of Saturn. Given that the orbital radius of Mimas, a moon of Saturn, is 1.62 × 108 m and its orbital period is about 23.21 h, we can use this data to find the mass of Saturn.

First, convert the orbital period to seconds: 23.21 h = 23.21 x 60 x 60 s = 83,556 s. Next, plug the values into the equation p² = a³: (83,556 s)² = (1.62 × 10^8 m)³. Solving for a³, we get a³ = (83,556 s)² / (1.62 × 10^8 m)³ = 38.3 x 10^18 s²/m³.

Now, rearrange the equation to solve for the mass of Saturn: mass of Saturn = (a³ x 4π²) / (G), where G is the gravitational constant. Plug in the known values: mass of Saturn = (38.3 x 10^18 s²/m³ x 4π²) / (6.67 x 10^-11 N m²/kg²). Calculating this, we get a mass of Saturn of approximately 5.69 x 10^26 kg.

After a completely inelastic collision, two objects of the same mass and same initial speed move away together at half their initial speed. Find the angle between the initial velocities of the objects.

Answers

Answer:

120°

Explanation:

given,

mass of two objects are same , Let it be m

speed of both the objects = v

after inelastic collision the

mass are moving with velocity = v/2

let the angle between them be θ₁ and θ₂

writing the equation along y-axis

m v sinθ₁ - m v sinθ₂ = 0

m v sinθ₁ = m v sinθ₂

θ₁ = θ₂ = θ

writing the equation along x- axis

m v cos θ + m v cos θ = 2 m V

 v cos θ =  v/2

 [tex]cos\theta = \dfrac{1}{2}[/tex]

 [tex]\theta = cos^{-1}(\dfrac{1}{2})[/tex]

 [tex]\theta = 60^0[/tex]

angle between the two objects = 2 θ

                                                     = 2 x 60° = 120°

A mass of 0.40 kg, hanging from a spring with a spring constant of 80 N/m, is set into an up-and-down simple harmonic motion. What is the speed of the mass when moving through the equilibrium point? The starting displacement from equilibrium is 0.10 m.

Answers

The speed of the mass when moving through the equilibrium point is 1.22 m/s.

Calculation of the mass speed:

But before that the angular frequency is

[tex]= \sqrt{\frac{80}{0.4} }[/tex]

= 14.14 rad/s

Now

The mass speed should be

[tex]= 14.14 \sqrt{(0.10)^2 - (0.05)^2}[/tex]

= 1.22 m/s

Learn more about the mass here: https://brainly.com/question/16030328

Final answer:

The speed of a 0.40-kg mass moving through the equilibrium point in simple harmonic motion with a spring constant of 80 N/m and an initial displacement of 0.10 m is 2 m/s.

Explanation:

The speed of the mass when moving through the equilibrium point in a scenario of simple harmonic motion can be determined using the formula for the maximum speed of an object in simple harmonic motion. This formula is v = √(k/m) * A, where v is the speed, k is the spring constant, m is the mass, and A is the amplitude, which in this case is the initial displacement of the object from equilibrium.

So, to calculate the speed of this 0.40-kg mass with a spring constant of 80 N/m as it passes through equilibrium, we plug those values into the formula:

v = √[(80 N/m) / (0.40 kg)] * (0.10 m) = 2 m/s.

Learn more about Simple Harmonic Motion here:

https://brainly.com/question/28208332

#SPJ11

The index of refraction for flint glass is 1.5. This means that

Answers

Answer:

Explanation:

This means that the ratio of the speed of the incident beam of light in a vacuum to the speed of light in the glass is 1.5

This means that the speed of light in vacuum is 1.5 times the speed of light in flint glass.

A fielder tosses a 0.15 kg baseball at 26 m/s at a 36 ∘ angle to the horizontal.Part AWhat is the ball's kinetic energy at the start of its motion?Express your answer with the appropriate units.Part BWhat is the kinetic energy at the highest point of its arc?Express your answer with the appropriate units.

Answers

Answer:

A. 50.7 J

B. 33.18 J

Explanation:

At the start of the motion the kinetic energy of the ball would be

[tex]E_k = \frac{mv^2}{2} = \frac{0.15*26^2}{2} = 50.7  J[/tex]

When the ball gets to the highest point, vertical velocity must be 0, only horizontal velocity contributes to the kinetic energy. Since air resistant can be neglected, horizontal energy is preserved since the start

[tex]v_h = vcos(36^o) = 26*0.81 = 21.03 m/s[/tex]

So the kinetic energy at this point is

[tex]E = \frac{mv_h^2}{2} = \frac{0.15*21.03^2}{2} = 33.18J[/tex]

Given the data from the question, the kinetic energy at the start and at the highest point are:

A. The kinetic energy at the start of the motion is 50.7 J

B. The kinetic energy at the highest point is 0 J

What is kinetic energy?

This is the energy possessed by an object in motion. Mathematically, it can be expressed as:

KE = ½mv²

Where

KE is the kinetic energy m is the mass v is the velocity

A. How to determine the KE at the start Mass (m) = 0.15 KgVelocity (v) = 26 m/sKinetic energy (KE) =?

KE = ½mv²

KE = ½ × 0.15 × 26²

KE = 50.7 J

B. How to determine the KE at the highest point Mass (m) = 0.15 KgVelocity (v) = 0 m/s (at highest point) Kinetic energy (KE) =?

KE = ½mv²

KE = ½ × 0.15 × 0

KE = 0 J

Learn more about energy:

https://brainly.com/question/10703928

An 8.7 g bullet is accelerated in a rifle barrel 105 cm long to a speed of 465 m/s. Use the work-energy theorem to find the average force exerted on the bullet while it is being accelerated. Answer in units of N.

Answers

Answer:896 N

Explanation:

Given

mass of bullet [tex]m=8.7 gm[/tex]

Length of barrel [tex]d=105 cm=1.05 m[/tex]

final velocity [tex]v=465 m/s[/tex]

initial velocity [tex]u=0 m/s[/tex]

Work done by all the forces is equal to change in kinetic Energy

[tex]F\cdot d=\frac{1}{2}\times mv^2-0[/tex]

[tex]F_{avg}\times 1.05=\frac{1}{2}\times 8.7\times 10^{-3}\times 465^2[/tex]

[tex]F_{avg}=\frac{0.5\times 8.7\times 10^{-3}\times 465^2}{1.05}[/tex]

[tex]F_{avg}=895.789 Na\pprox 896 N[/tex]

A 1.5-cm object is placed 0.50 m to the left of a diverging lens with a focal length of 0.20 m. A converging lens with a focal length of 0.17 m is located 0.08 m to the right of the diverging lens. What is the height and orientation with respect to the original object of the final image?

Answers

Answer:

The object for the converging lens is upright and 0.429 cm tall, the image of this converging lens is inverted and 1.375 cm high

Explanation:

Let

[tex]d_{o}=distance of object[tex]\\f=focal length\\d_{i}=distance of image\\I_{h}=Image height[/tex]

For diverging lens:

[tex]d_{o} = 0.50\\f = -0.20\\\frac{1}{d_{o}}+\frac{1}{-0.20}\\\frac{1}{d_{i}}=\frac{1}{-0.20}-\frac{1}{0.50}=-7\\d_{o}=-\frac{1}{7}[/tex]

Magnification = [tex]\frac{d_{i}}{d_{o}}= -\frac{1}{7}÷ 0.5 = -0.286[/tex]

Image height [tex]= -0.286 * 1.5 = -0.429 cm[/tex] (negative sign means the image is virtual, inverted.

This image is [tex]\frac{1}{7}[/tex] meter to left of the center of the diverging lens.

The converging lens is located 0.08 m to the right of the diverging lens

The distance between the image of the diverging lens and center of the converging lens = [tex]\frac{1}{7} + 0.08 = 0.229 m[/tex]

The image of the diverging lens becomes the object of the converging lens.

[tex]d_{o} = 0.223\\f = 0.17\\\frac{1}{d_{i}}=\frac{1}{0.17}-\frac{1}{0.223}=0.715\\d_{i}=0.715m to the right of the converging lens[/tex]

[tex]Magnification =\frac{d_{i}}{d_{o}} = \frac{0.715}{0.223}=3.206\\image height=3.206 * 0.429 = 1.375 cm.[/tex]

Objects 1 and 2 attract each other with a gravitational force of 72.0 units. If the mass of Object 1 is one-fourth the original value AND the mass of object 2 is tripled AND the distance separating Objects 1 and 2 is halved, then the new gravitational force will be _____ units.

Answers

Final answer:

When the mass of Object 1 is reduced to one-fourth, the mass of Object 2 is tripled, and the separating distance is halved, the new gravitational force between these objects will be three times the original force. Thus, the new gravitational force will be 216.0 units.

Explanation:

The question asks us to determine the new gravitational force between two objects given that the mass of Object 1 is reduced to one-fourth of its original mass (so M1 becomes 0.25M1), the mass of Object 2 is tripled (so M2 becomes 3M2), and the distance separating the objects is halved (so R becomes 0.5R). Since gravitational force is calculated using the equation F = G*(M1*M2)/(R^2), where G is the universal gravitational constant, we can plug our new values into this equation.

So, the new gravitational force F' = G*(0.25M1 * 3M2)/(0.5R)^2. This simplifies further to F' = G*(0.75M1M2)/(0.25R^2) = 3 *(G*M1M2/R^2) = 3 * original force. Therefore, if the original force was 72.0 units, the new gravitational force is 3 * 72.0 = 216.0 units.

Learn more about Gravitational Force here:

https://brainly.com/question/32609171

#SPJ12

Final answer:

To find the new gravitational force between the objects, we can use Newton's Law of Universal Gravitation.

Explanation:

The new gravitational force can be calculated using Newton's Law of Universal Gravitation, which states that the force between two objects is directly proportional to the product of their masses and inversely proportional to the square of the distance between them.


Let's denote the original mass of Object 1 as m1, the original mass of Object 2 as m2, and the original distance separating them as d. The original gravitational force can be represented as:


F1 = G * (m1 * m2) / d²


After the given changes, the new mass of Object 1 is 1/4 * m1, the new mass of Object 2 is 3 * m2, and the new distance is 1/2 * d. Plugging these values into the equation, we find the new gravitational force:

F2 = G * ((1/4 * m1) * (3 * m2)) / (1/2 * d)²

Simplifying this equation will give us the answer.

Learn more about Gravitational force here:

https://brainly.com/question/32609171

#SPJ12

Look at the diagram showing the different wavelengths in sunlight.



I AM ON A TIMER!!!
Which statement describes electromagnetic waves with wavelengths greater than 700 nanometers?

They take the form of heat.
They can cause skin cancer and sunburn.
They are some of the shortest waves.
They can be seen by human eyes as visible light.

Answers

Answer:

Explanation:

They are infrared waves which mean they take the form of heat.

Answer: A

Explanation:

Which of the following is true about the speed of light?

A.) It is a constant when the light is traveling in a vacuum.

B.) It speeds up or slows down depending on the observer.

C.) It is slowest in a vacuum.

D.) It varies depending on the color of the light.

Answers

Answer:

It is a constant when the light is traveling in a vacuum.

Explanation:

When a stone is dropped into a pond, ripples form and move in concentric circles outward from the location of the stone impact. As the ripples move outward, they lose waves lose amplitude. If we neglect friction, why would the wave amplitude decrease the further they move outward?

Answers

Explanation:

When a stone is dropped into a pond, ripples form and move in concentric circles outward. This can be treated as a point source emitting waves. And for point source emitting waves

Intensity of the wave I = Source power Ps/Area

⇒[tex]I= \frac{Ps}{\pi r^2}[/tex]

⇒I∝1/r^2

Therefore, on increasing the distance r, the intensity of the wave decreases, this also means that the amplitude also decreases.

Region that contains the majority of molecules in the atmosphere

Answers

Answer:

Trophosphere

Explanation:

The troposphere is the atmospheric layer closest to the planet and is characterized because contains the largest percentage of the mass of the total atmosphere.

On special characteristic is that in this layer the temperature and water vapor content decrease a lot respect to the altitude. Also on this layer the Water vapor is important in order to regulate the air temperature since on this zone we have absorption of the solar energy.

The troposphere contains almost all the water vapor in the atmosphere. And specially on the tropics we have an accumulation of the water vapour.

All weather phenomena occur within the troposphere. Tropos means "change" and Troposphere means "region of mixing".

Above this layer, we have the tropopause, ranges in height from 5 miles near the poles up to 11 miles above the equator. And the height depends of the seasons, with an special characteristic: the is highest height occurs in the summer and lowest height occurs in the winter.

The troposphere contains almost 75% of the mass of the entire atmosphere. The air on this layer is composed by 78% nitrogen, 21% oxygen and 1% is made of argon, water vapor, and carbon dioxide.

So for this reason this is the Region that contains the majority of molecules in the atmosphere.

A balloon is filled to a volume of 7.00*10^2 mL at a temperature of 20.0°C. The balloon is then cooled at constant pressure to a temperature of 1.00*10^2 K. What is the final volume of the balloon?

Answers

The final volume of the gas is 238.9 mL

Explanation:

We can solve this problem by using Charle's law, which states that for a gas kept at constant pressure, the volume of the gas (V) is proportional to its absolute temperature (T):

[tex]\frac{V}{T}=const.[/tex]

Which can be also re-written as

[tex]\frac{V_1}{T_1}=\frac{V_2}{T_2}[/tex]

where

[tex]V_1, V_2[/tex] are the initial and final volumes of the gas

[tex]T_1, T_2[/tex] are the initial and final temperature of the gas

For the gas in the balloon in this problem, we have:

[tex]V_1 = 7.00\cdot 10^2 mL = 700 mL[/tex] is the initial volume

[tex]T_1=20.0^{\circ}C+273=293 K[/tex] is the initial absolute temperature

[tex]V_2[/tex] is the final volume

[tex]T_2 = 1.00\cdot 10^2 K = 100 K[/tex] is the final temperature

Solving for [tex]V_2[/tex],

[tex]V_2 = \frac{V_1 T_2}{T_1}=\frac{(700)(100)}{293}=238.9 mL[/tex]

Learn more about ideal gases:

brainly.com/question/9321544

brainly.com/question/7316997

brainly.com/question/3658563

#LearnwithBrainly

A manufacturer of chocolate chips would like to know whether its bag filling machine works correctly at the 420 gram setting. It is believed that the machine is underfilling the bags. A 24 bag sample had a mean of 414 grams with a standard deviation of 15. Assume the population is normally distributed. A level of significance of 0.1 will be used. Find the P-value of the test statistic.

Answers

Answer:

P-value of the test statistic is 2.499

Explanation:

given data:

size sample is 24

sample mean is 414 gm

standard deviation is 15

Null hypotheis is

[tex]H_0: \mu = 420 gm[/tex]

[tex]H_1 \mu< 420[/tex]

level of significance is 0.01

from test statics

[tex]t = \frac{\hat x - \mu}{\frac{s}{\sqrt{n}}}[/tex]

degree od freedom is  =  n -1

df = 24 -1 = 13

[tex]t = \frac{414 - 420}{\frac{15}{\sqrt{24}}}[/tex]

t = -1.959

from t table critical value of t at 0.1 significane level and 23 degree of freedom  is 2.499

A hand pump is being used to inflate a bicycle tire that has a gauge pressure of 59.0 lb/in2. If the pump is a cylinder of length 17.4 in. with a cross-sectional area of 3.00 in.2, how far down must the piston be pushed before air will flow into the tire? Assume the temperature is constant.
Answer must be in inches

Answers

Answer:

∴The air cannot be made to flow in with the given pump at the given conditions.

Explanation:

Given:

gauge pressure of bicycle tyre, [tex]P_g=59\ lb.in^{-2}[/tex]length of cylinder of the pump, [tex]l=17.4\ in[/tex]area of the the cylinder of the pump, [tex]a= 3\ in^2[/tex]we have the density of air at STP, [tex]\rho=4.4256\times 10^{-5}\ lb.in^{-2}[/tex]

The piston must be pushed more than the pressure inside the tyre:

[tex]P_g=\rho\times V\div a[/tex]

[tex]59=4.4256\times 10^{-5}\times a\times h\div a[/tex]

[tex]h=13.33\times 10^5\ in[/tex]

∴The air cannot be made to flow in with the given pump at the given conditions.

A uniform rectangular plate of length B = 15 cm and height A = 24 cm has a rectangular corner cut out of it of length D = 6 cm and height C = 8 cm. The plate is made of a material of area mass density σ. For this problem we set the origin at the lower left corner of the plate with the x-axis horizontal pointing right and the y-axis vertical pointing up.

a. Calculate the value of the y-coordinate, in centimeters, for the center of mass of the plate.

b. Calculate the value of the x-coordinate, in centimeters, for the center of mass of the plate.

Answers

Final answer:

The center of mass for a rectangle with a corner cut out can be calculated using the centroid formula by considering the plate and the cut-out as separate figures and then determining the average weighted by area.

Explanation:

This problem concerns the calculation of the center of mass for 2-dimensional figures. The center of mass represents the point at which we could balance the object in a uniform gravitational field and is calculated by integrating the mass distributed in the object.

First, consider that area mass density σ is constant. Thus, this is equivalent to finding the centroid of the shape. The location of the centroid C (x,y) is given by:

x = (A1x1 + A2x2)/(A1 + A2)

and

y = (A1y1 + A2y2)/(A1 + A2)

where Ax and Ay represent the area and centroid coordinate of the individual figure, respectively. For this problem, A1 is the whole rectangular plate and A2 is the cutout. The centroid of a rectangle is at the midpoint of its diagonals, so the x and y coordinates for A1 are (B/2, A/2) and for A2 are (D, D/2).

Then, the x-coordinate for the center of mass becomes, x = [(AB*(B/2) - CD*(D/2)]/(AB - CD) and y-coordinate for center of mass becomes, y = [(AB*(A/2) - CD*(C/2)]/(AB - CD) Calculate them to get numerical value.

Learn more about the Center of Mass here:

https://brainly.com/question/33607198

#SPJ3

What is the asthenosphere and describe its characteristics?

Answers

Answer:

Layer of the interior of the Earth that extends approximately between 50 and 150 km deep, formed mainly by partially molten plastic rocks that can deform: the asthenosphere is located between the lithosphere and the mesosphere.

Explanation:

The asthenosphere is composed of ductile silicate materials, in solid state and partially or totally semi-molten (according to their depth and / or proximity to magma bags), which allow continental drift and isostasis. On it the tectonic plates move.

Characteristics of the asthenosphere

The asthenosphere is a part of the upper mantle, just below the lithosphere that is involved in tectonic plate movements and isostatic adjustments.

Despite its heat, the pressure keeps it like plastic and has a relatively low density. Seismic waves pass relatively slowly through the asthenosphere, compared to the mantle that covers the lithosphere, which is why it has been called the low-speed zone.

This was the observation that originally alerted the seismologists to their presence and gave some information about their physical properties, such as the speed of the seismic waves that decreases as stiffness decreases. Under the thin oceanic plates the asthenosphere is generally much closer to the surface of the seabed, and rises a few kilometers from the ocean floor.

Due to the temperature and pressure conditions in the asthenosphere, the rock becomes ductile, moving at a deformation rate that is measured in cm / year at linear distances that finally reach thousands of kilometers. In this way, it flows like a convection current, radiating heat outward from inside the Earth. Above the asthenosphere, at the same rate of deformation, the rock behaves elastically and, if fragile, can break, causing failures. The rigid lithosphere is believed to "float" over the asthenosphere from which it flows slowly, creating the movement of tectonic plates.

Answer:

The conistency is solid layer of rock

Explanation:

Calculate the specific heat of a metal from the following data. A container made of the metal has a mass of 3.9 kg and contains 11 kg of water. A 2.0 kg piece of the metal initially at a temperature of 189°C is dropped into the water. The container and water initially have a temperature of 16.0°C, and the final temperature of the entire system is 18.0°C.

Answers

Answer:

[tex]c_m =272.365\frac{J}{KgK}[/tex]

Explanation:

1) Notation and data given

[tex]m_c[/tex]= mass of the container = 3.9 kg

[tex]m_w[/tex]= mass of the water inside of the container= 11 kg

[tex]m_m[/tex]=mass of the metal= 2 kg

[tex]T_{im}=189\degree C[/tex] initital temperature of the metal

[tex]T_{iw}=16\degree C[/tex] initital temperature of the water

[tex]T_{ic}=16\degree C[/tex] initital temperature of the container

[tex]T_{f}=18\degree C[/tex] final equilibrium temperature

2) Concepts and formulas

Since the inital temperature for the pice of metal is higher than the temperature for the container and the water inside, the piece of metal will transfer heat, and this transferred heat is the same amount absorbed by the container and the water reaching the equilibrium. So then we have this formula:

[tex]Q_m =Q_w + Q_c[/tex]

We don't have any change of phase so then we just have the presence of sensible heat, and using this we got that:

[tex]m_p c_m \Delta T_m =m_w c_w \Delta T +m_c c_c \Delta T[/tex]

On this case the container is made by the same metal so then [tex]c_c=c_m[/tex]

[tex]m_p c_m \Delta T_m =m_w c_w \Delta T +m_c c_m \Delta T[/tex]

And solving for [tex]c_m[/tex] from the last expression we got:

[tex]m_p c_m \Delta T_m -m_c c_m \Delta T_c =m_w c_w \Delta T[/tex]

[tex]c_m [m_p \Delta T_m -m_c \Delta T_c] =m_w c_w \Delta T[/tex]

[tex]c_m=\frac{m_w c_w \Delta T}{m_p \Delta T_m -m_c \Delta T_c}[/tex]

Replacing the values we have:

[tex]c_m=\frac{11kg(4187\frac{J}{KgK}(18\degree C-16\degree C)}{2kg(189\degree C -16 \degree C) -3.9Kg(18\degree C -16\degree C)}= 272.365\frac{J}{Kg K}[/tex]

What is the name of moving fields of angular blocks which are formed by gravity and the freezing-thawing cycle? A. Scree B. Talus C. Bedrock slumps D. Bedrock slides E. Rock glaciers

Answers

Answer:

Option (E)

Explanation:

The Rock glaciers are a type of landform that is formed due to the downward motion of angular blocks under the influence of gravity and the continuous cycle of freeze and thaw method. It mostly occurs in the steep slopes where the soil particles and the rock materials are prone to landslide. Here, the materials are mixed and covered with ice. This also occurs in the region where the permafrost layer undergoes creeping.

This downward motion of ice erodes the soil particles and carries with them further, from the site of talus cone or moraines and extends outward.

Thus, the correct answer is option (E).

Answer:

one of it is e

Explanation:

A horse runs a race on a oval track and starts and ends at the same point. He runs one mile track in 7 minutes.

What is the horse's velocity


A. 0 mph


B. 7 mph


C. 14 mph


D. 20 mph

Answers

Final answer:

The horse's velocity after completing a mile on an oval track and ending at the starting point is 0 mph. However, if considering speed, the horse runs at approximately 8.57 mph. The given options do not accurately represent this calculation.

Explanation:

The question pertains to determining the velocity of a horse after running a complete race on an oval track, where the start and end points are the same. In physics, velocity is a vector quantity, meaning it has both magnitude and direction. Since the horse starts and finishes at the same point, the displacement over the course of the race is zero. Consequently, the average velocity is also zero because velocity is displacement divided by time.

In this scenario however, we are looking for speed, which is a scalar quantity and only considers magnitude, not direction. Speed is total distance divided by time. The horse runs a one mile track in 7 minutes. To find the speed, first convert 7 minutes to hours:

7 minutes = 7/60 hours = 0.1167 hours

Then divide the distance (1 mile) by the time in hours to find the speed:

Speed = 1 mile / 0.1167 hours = approximately 8.57 mph

Since none of the options matches this calculation, it seems there might be a mistake in the provided answer choices. If we had to choose from the given options and ignore the direction of the horse's travel, B. 7 mph would be the closest to the calculated value, albeit still not accurate.

A 50.1 kg diver steps off a diving board and drops straight down into the water. The water provides an average net force of resistance of 1598 N to the diver’s fall. If the diver comes to rest 5.2 m below the water’s surface, what is the total distance between the diving board and the diver’s stopping point underwater? The acceleration due to gravity is 9.81 m/s 2. Answer in units of m.

Answers

Answer:

The total distance is 16.9 m

Explanation:

We understand work in physics as certain force exerted through certain distance. To reach that point below the water, the work done by the diver must be equal to the work done by the water's force of resistance. Therefore, we determine both work expressions and we solve the equation for the diver distance, which is the total distance between the diving board and the stopping point underwater.

[tex]W_{d}: work done by diver\\W_{R}: work due the force of resistance\\W_{d} = W_{R}\\F_{d}\times d_{d}=F_R \times d_{R}\\d_{d}= \frac{F_R \times d_R}{F_d}= \frac{F_R \times d_R}{m_d \times g}= \frac {1598 N \times 5.2 m}{50.1 kg \times 9.81 m/s^2}\\d_{d}= 16. 91 m[/tex]

An electron that has an instantaneous velocity of ???? = 2.0 × 106 m ???? ???? + 3.0 × 106 m ???? ???? is moving through the uniform magnetic field ???? = 0.030T ???? − 0.15T ???? . (a) Find the force on the electron due to the magnetic field (b) Repeat your calculation for a proton having the same velocity.

Answers

Explanation:

It is given that,

Velocity of the electron, [tex]v=(2\times 10^6i+3\times 10^6j)\ m/s[/tex]

Magnetic field, [tex]B=(0.030i-0.15j)\ T[/tex]

Charge of electron, [tex]q_e=-1.6\times 10^{-19}\ C[/tex]

(a) Let [tex]F_e[/tex] is the force on the electron due to the magnetic field. The magnetic force acting on it is given by :

[tex]F_e=q_e(v\times B)[/tex]

[tex]F_e=1.6\times 10^{-19}\times [(2\times 10^6i+3\times 10^6j)\times (0.030i-0.15j)][/tex]

[tex]F_e=-1.6\times 10^{-19}\times (-390000)(k)[/tex]

[tex]F_e=6.24\times 10^{-14}k\ N[/tex]

(b) The charge of electron, [tex]q_p=1.6\times 10^{-19}\ C[/tex]

The force acting on the proton is same as force on electron but in opposite direction i.e (-k). Hence, this is the required solution.

A spring (70 N/m ) has an equilibrium length of 1.00 m. The spring is compressed to a length of 0.50 m and a mass of 2.0 kg is placed at its free end on a frictionless slope which makes an angle of 41 ∘ with respect to the horizontal. The spring is then released
A)If the mass is not attached to the spring, how far up the slope from the compressed point will the mass move before coming to rest?
B)If the mass is attached to the spring, how far up the slope from the compressed point will the mass move before coming to rest?

Answers

Answer:

Part a)

[tex]L = 0.68 m[/tex]

Part b)

[tex]L = 0.63 m[/tex]

Explanation:

Part a)

As we know that there is no friction in the path

So here we can use energy conservation to find the distance moved by the mass

Initial spring energy = final gravitational potential energy

so we will have

[tex]\frac{1}{2}kx^2 = mgL sin\theta[/tex]

[tex]\frac{1}{2}70(0.5)^2 = 2(9.81)(L) sin41[/tex]

[tex]8.75 = 12.87 L[/tex]

[tex]L = 0.68 m[/tex]

Part b)

Now if spring is connected to the block then again we can use energy conservation

so we will have

[tex]\frac{1}{2}kx^2 = mg(x + x')sin\theta + \frac{1}{2}kx'^2[/tex]

so we will have

[tex]\frac{1}{2}(70)(0.5^2) = 2(9.81) (0.50 + x') sin41 + \frac{1}{2}(70)x'^2[/tex]

[tex]8.75 = 6.43 + 12.87 x' + 35 x'^2[/tex]

[tex]x' = 0.13 m[/tex]

so total distance moved upwards is

[tex]L = 0.5 + 0.13 = 0.63 m[/tex]

If the spring is not attached, the mass will move 0.68 meters. however, if the spring is attached, the mass will move by 0.63 meters.

How can we arrive at these results?We will first calculate the motion of the mass if it is not attached to the spring. This will be done with the following formula:

[tex]\frac{1}{2} kx^2=m*g*L*sin41[/tex]

Within this formula, the symbol "k" represents 70 N/m. The "x" represents 0.50m. The "m" is 2.0 kg, the "g" represents gravity and the L is the value we need to find.

Therefore, we can substitute the values of the formula as follows:

[tex]\frac{1}{2}70(0.50)^2= 2*9.81 *L*sin41\\8.75=12.87L\\L= \frac{8.75}{12.87} = 0.67 ------- 0.68m[/tex]

Then we can calculate the distance traveled by the mass attached to the spring. For this, we will use the formula:

[tex]\frac{1}{2} kx^2= m*g*(x+x')*sin41+\frac{1}{2} 70x'^2[/tex]

By substituting the values, we can answer the equation as follows:

[tex]\frac{1}{2} 70*0.50^2=2*9.81*(0.50+x')*sin41+\frac{1}{2} 70x'^2\\8.75=6.43+12.87x'+35x'\\X'=0.13m \\\\L=0.5+0.13=0.63 m[/tex]

More information about gravity in the link:

https://brainly.com/question/1479537

Calculate the force of friction that keeps an 80-kg person sitting on the edge of a horizontal rotating platform when the person sits 2 m from the center of the platform and has a tangential speed of 3 m/s.

Answers

Answer:

360N

Explanation:

The frictional force = centripetal force = mass * centripetal acceleration = ma

Since centripetal acceleration = V^2/ r

Frictional force = mv^2 / r

Substitute the values of m = 80kg, radius = 2m and tangential speed = 3m/s

Frictional force = 80 * (3)^2/ 2 = 360N

The force of friction that keeps the person sitting on the edge of the rotating platform is 360 N.

To calculate the force of friction that keeps an 80-kg person sitting on the edge of a horizontal rotating platform, we need to find the centripetal force required to keep the person moving in a circular path. The centripetal force is provided by the frictional force between the person and the platform.

 The formula for centripetal force [tex](\(F_c\))[/tex] is given by:

[tex]\[ F_c = \frac{mv^2}{r} \][/tex]

Let's plug in the values:

[tex]\[ F_c = \frac{(80\text{ kg})(3\text{ m/s})^2}{2\text{ m}} \][/tex]

[tex]\[ F_c = \frac{(80\text{ kg})(9\text{ m}^2/\text{s}^2)}{2\text{ m}} \][/tex]

[tex]\[ F_c = \frac{720\text{ kg}\cdot\text{m}/\text{s}^2}{2} \][/tex]

[tex]\[ F_c = 360\text{ N} \][/tex]

 Therefore, the force of friction that keeps the person sitting on the edge of the rotating platform is 360 N.

 The answer is: [tex]360\text{ N}[/tex]

A conductor carries a current that is decreasing exponentially with time. The current is modeled as ????=????0????−????/???? , where ????0=3.00A is the current at time ????=0.00s and ????=0.50s is the time constant. How much charge flows through the conductor between ????=0.00s and ????=3???? ?

Answers

Answer:

Q=1.42 C

Explanation:

Given that

[tex]I=I_oe^{\dfrac{-t}{\tau}}[/tex]

When t= 0 ,Io = 3 A

τ = Time constant = 0.5 s

[tex]I=3e^{-\dfrac{t}{\tau}}[/tex]

We know that

[tex]I=\dfrac{dQ}{dt}[/tex]

Q=Charge ,I =Current

Q = ∫I.dt

Given that

t= 0 to t= 3τ= 1.5 s

The charge Q

[tex]Q=\int_{0}^{1.5}3e^{-\dfrac{t}{0.5}}dt[/tex]

Q=1.42 C

Therefore charge flow conductor will be 1.42 C.

Other Questions
The ______ approach gives upper management a quick but thorough view of the organization via four indicators: customer satisfaction, internal processes, innovation and improvement activities, and financial measures. Draw the structure of the starting material needed to make 2-methylhept-3-yne using sodium amide in liquid ammonia How much carbon dioxide in kilograms is produced upon the complete combustion of 29.4 L of propane (approximate contents of one 5-gal tank)? Assume that the density of the liquid propane in the tank is 0.621 g / mL. A school has two computer labs Each lap has 30 computers a total of six computers in the school or not working which expression can be used to find the number of working computers in the school What was the role of international trade in the east Africa coast before 16th century? HELP!!!!! Why is Cuba considered an autocracy?A. because Cubas legislature is is made up of only one houseB. because Cubas government is controlled by one person or party with absolute authorityC. because Cubas government controls many of the countrys resources can someone please help me? How does Anne feel about Peter in Act II, Scene 2?She is wondering if he is too shy.She is becoming attracted to himShe is jealous that he is interested in Margot.She is angry with him because he teases her. Which expression is equivalent to the given expression?5x -2o. 2-5xo. 3 - 5 +2xo. 5x - 2xo. 2x - 2 + 3x A company wants to determine its reorder point (R). Demand is variable and the company wants to build a safety stock into R. If the average daily demand is 12, the lead time is 5 days, the desired z value is 1.96, and the standard deviation of usage during lead time is 3, which of the following is the desired value of R? Assume 2 kg of apples is 1 dozen and that each apple has 8 seeds. How many apple seeds are in 14 kg of apples? Which statement is an example of determining the relative age?determining which individual is older based on the style of clothing they wore in a pictureknowing the age of a grandmother because she was a kid during the Great Depressiondoing a genealogy search to find out a great, great, grandfather was born June 2, 1890use birth certificate records to confirm the first birth occurred in the hospital on January 11, 1750 Water towers store water above the level of consumers for times of heavy use, eliminating the need for high-speed pumps. How high (in m) above a user must the water level be to create a gauge pressure of 4.63 105 N/m2? When 100 ml of 1.0 M Na3PO4 is mixed with 100 ml of 1.0 M AgNO3,a yellow precipitate forms and Ag+ becomes negligibly small. Whichof the following is the correct listing of the ions remaining in solutionin order of increasing concentration?(A) PO43- < NO3- < Na+ (B) PO43- < Na+ < NO3- (C) NO3- < PO43- < Na+(D) Na+ < NO3- < PO43-(E) Na+ < PO43- < NO3- John began the week with -21 dollars in his bank account. Hedeposited, d, dollars in the accountand now has $789. How much didJohn deposit? D= 1/5fk solve for k Carson bought two loaves of bread and one dozen eggs at the grocery store yesterday he paid a total of $6.09.If one dozen of eggs cost $1.79,how much is a loaf of bread? The greatest contrast in both temperature and moisture will occur along the boundary separating which air masses? 1)Find the explicit formula that defines the sequencConsider the sequences6,810,-)2)Find the 130th term of the sequenceA202D262 PLEASE HELP!!!! WILL GIVE BRAINLIEST!!!!!!!Aurora is selling tickets to a carnival. The function f(x) = 0.5x represents the amount of money Aurora earns per ticket, where x is the number of tickets she sells. The function g(x) = 8x represents the number of tickets Aurora sells per hour, where x is the number of hours she works. Find f(g(x)), and explain what it represents. a. f(g(x)) = 4x, which represents the money Aurora made in dollars per hour b. f(g(x)) = 4x, which represents the number of tickets Aurora sold per hour c. f(g(x)) = 16x, which represents the money Aurora made in dollars per hour d. f(g(x)) = 16x, which represents the number of tickets Aurora sold per hour