The (Figure 1) shows two thin beams joined at right angles. The verticalbeam is 12.0kg and 1.00 m long and the horizontal beam is 26.0kg and 2.00 m long. Neglect the lateral dimensions of the beams.1)Find the center of gravity of the two joined beams. Express your answer in the form x,y, taking the origin at the corner where the beams join.2)Calculate the gravitational torque on the joined beams about an axis through the corner

Answers

Answer 1

A) The center of the gravity of the two joined beams is;

(x, y) = (25/44), (19/88)

B) The gravitational torque on joined beams about an axis through the corner is;

τ = 245 N.m

How to calculate the gravitational torque on the joined beams about an axis through the corner?

We have;

Mass of the vertical beam; m₂ = 19 kg

Mass of the horizontal beam, m₁ = 25 kg

Length of the horizontal beam; L₁ = 2 m

Length of the vertical beam; L₂ = 1 m

A) The formula for the center of gravity of the two joined beams is;

(x, y) = [(m₁x₁ + m₂x₂)/(m₁ + m₂)],  [(m₁y₁ + m₂y₂)/(m₁ + m₂)]

Where;

(x₁, y₁) is the center of gravity on horizontal beam

(x₂, y₂) is the center of gravity on vertical beam

(x₁, y₁) = (L₁/2, 0)

Putting in the relevant values gives;

(x₁, y₁) = (2/2, 0)

(x₁, y₁) = (1, 0)

(x₂, y₂) = (0, L₂/2)

Putting in the relevant values gives;

(x₂, y₂) = (0, 1/2)

(x₂, y₂) = (0, 0.5)

Thus, the center of gravity of the 2 joined beams is;

(x, y) = [((25 × 1) + (19 × 0))/(25 + 19)],  [((25 × 0)  + (19 × 0.5)))/(25 + 19)]

(x, y) = (25/44), (19/88)

B) The formula for the gravitational torque on the joined beams about an axis through the corner is given as;

τ = (m₁g)x₁ + (m₂g)x₂

Putting in the relevant values;

τ = (25 × 9.8)1 + (19 × 9.8)0

τ = 245 N.m

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Related Questions

for the following circuit, assume the diodes are identical and follow an ideal voltage source model with the turn-on voltage of vf

Answers

An ideal voltage source model with the turn-on voltage of vf is 7.7 66.

What is voltage?

Voltage is the pressure from the power source of an electrical circuit that drives charged electrons (current) through a conducting loop, allowing them to perform tasks like lighting a lamp. Briefly stated, voltage equals pressure and is measured in volts (V).

What is circuit ?

A circuit is a closed circuit in which electrons can move. Electrical energy for the circuit comes from a source of electricity, like a battery. No electrons will move unless the circuit is complete, that is, it makes a complete circuit around the electrical source.

Both diodes are forward based, replacing diode with voltage drop.

Apply KVL to loop

12v= i₁ e₁+0.7+ i₂ e₂ + 0.7

12v = 1.4 + i₁ (R₁+R₂)

10.6 = i₁ (R₁+R₂)

i₁ = 10.6/(R₁+R₂)

10.6/150 = 70.6 mA

V₀= i₁ R₂ + 0.7 =  70.6 mA* 100+ 0.7 = 7.7 66

Therefore, an ideal voltage source model with the turn-on voltage of vf is 7.7 66.

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If you drive west at 40 mph for 2.5 hours how far would u travel

Answers

Answer:

100 Miles

Explanation:

If...

40 miles x 2.5 is 100

Then...

It travels 100 miles in 2.5 hours!

Hope this helps! :)

which rock name is best for the sample in the photograph? you can scratch this rock with your fingernail. it feels soapy. (not in rock kit)

Answers

The sample of rock in the photograph (attached below) which feels soapy and could be scratched with our fingernail is called: talc mineral.

What is Talc mineral?

Talc is the softest mineral (rock) we can find on Earth. Talc composes of magnesium silicate and is most often found in the metamorphic rocks of the convergent plate. We can scratch this rock with our fingernails and it can even be crushed to form a white powder. In powder form, it can absorb moisture, oils, and odor, and could be used as a lubricant. Talc mineral is widely known as a soapstone as in its rock form, talc feels soapy.

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The figures below show one or more metal wires sliding on fixed metal rails in a magnetic field. For each, determine if the induced current flows clockwise, flows counterclockwise, or is zero. Show your answer by drawing it. a. • • b. x x x x d. . x x x x тx

Answers

As per lenz's law, a current induced in such a way that it opposes the change in flux through loop.

What are metal wires?

A wire is a flexible strand of metal. The wire is commonly formed by drawing the metal through a hole in a die or draw plate. Wire gauges come in various standard sizes, as expressed in terms of gauge number. Wires are used to bear mechanical loads, often in the form of wire rope.

As per lenz's law, a current induced in such a way that it opposes the change in flux through loop.

Following are the directions of flow of current for each diagram -

a) Clock -wise

b) counter - clockwise

c) No flux change so, Induced Current = 0

d) counter - clock wise

e) clockwise

f) No current

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Complete Question is in the adjoining image -

refractive index of a material relation with temperature, wavelength of the incident light and optical density

Answers

Absolute Refractive Index = Speed of light in vacuum / speed of light in medium.

Absolute refractive index is the ratio of the speed of light in a vacuum to the speed of light in a given material. It is an important physical property of a material, and is used to calculate the refractive index of a medium relative to a vacuum.

As the temperature rises, the speed of light increases because the optical density of the light is decreasing. The refractive index varies simultaneously for incident light of different wavelengths.

Refractive index can be written as n = λv / λm , where λv is the wavelength in vacuum and λm is the wavelength of the medium.

The density and temperature of a material affect its absolute refractive index. The wavelength of the incident light also plays a role.

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If a raindrop forms in the sky and lands on your head 1 min later how high up in the air did the raindrop form?

Round to the nearest whole number.

Answers

The height of the raindrop that forms in the sky and lands on your head 1 minute later is 17640 m.

What is free fall?

Free fall refers to the motion of an object that is at a height above the ground and which is then allowed to fall freely under the influence of gravity.

The motion of an object that is allowed to undergo free fall is given by the equation below:

h = ut + ¹/₂ gt²

where

h is the height of the object above the ground

u is the initial velocity of the object

t is the time taken for the fall

g is the acceleration due to gravity

The height of the raindrop that forms in the sky and lands on your head 1 minute later is calculated using the equation given above:

h = ?

u = 0 m/s

t = 1 minute or 60 seconds

g = 9.8 m/s²

h = 0 * 60 +  ¹/₂ * 9.8 * 60 * 60

h = 17640 m

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TRUE/FALSE. the magnetic force on a charged particle in a magnetic field is a maximum if the particle is stationary.

Answers

The aforementioned claim is untrue

because

the stationary nature of the particle implies or proves that its velocity is zero. Therefore, the magnetic force acting on the charged particle is neither maximum nor zero.

In a magnetic field, there is charge:

Both the electric and magnetic fields can affect how a charge behaves. A magnetic field can exert force on a charged particle if it is present in an area of the field.

The magnetic field's strength is determined by:

the particle's charge.

the speed of the particle.

the field of magnetism.

the relationship between the magnetic field and the charge's speed.

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The picture below shows the Apollo 11 spacecraft that took astronauts to the Moon in 1969. The spacecraft weighed 6.1 million pounds, and its motors produced 7.5 million pounds of thrust. Use the picture to answer any questions that follow.
answer choices
The spacecraft produced an upward force of thrust that was equal to the downward force of gravity.
The spacecraft produced an upward force of thrust that was greater than the downward force of gravity.
The spacecraft produced a downward force of thrust that was equal to the downward force of gravity.
The spacecraft produced a downward force of thrust that was less than the downward force of gravity.

Answers

The spacecraft generated an upward push force higher than the gravitational pull to the earth's surface.

What is Apollo11?

On July 16, 1969, Apollo 11 lifted off from Cape Kennedy with Commander Neil Armstrong, Pilot of the Command Module Michael Collins, and Pilot of the Lunar Module Edwin "Buzz" Aldrin aboard. They were sent into an initial orbit of 114 by 116 miles around the Earth. On July 20, 1969, Armstrong took "...one modest step for a man, one giant leap for mankind," as he said in a televised visual and audio broadcast seen by an estimated 650 million people.

A rocket will take off and continue to accelerate so long as the force thrusting it upwards is stronger than the forces pulling and thrusting it downwards (gravity and drag).

We can better grasp how forces cause objects, like rockets, to move thanks to Newton's first law. Unless an imbalanced force acts upon a stationary object, it will stay stationary. A moving object will also keep moving in a straight line at a steady speed unless it is being affected by an unbalanced force.

When the upward thrust force of a rocket is higher than the downward weight force of gravity, the rocket will launch. A rocket accelerates upward due to this imbalanced force. As long as there is an upward force produced by the thrust of the rocket engine, a rocket will continue to accelerate.

An imbalanced force is required for an object to begin moving. The forces pulling an object in one way are greater than the forces pushing it in the opposing direction, according to this definition. The imbalanced force, also known as the resultant force, is the difference between the forces pushing in one direction and the opposite direction.

At the moment of liftoff, a rocket is subject to two forces:

By forcing gases downward in the opposite direction, thrust propels the rocket higher.

Weight is the gravitational force that pulls the rocket down and toward the centre of the Earth. 9.8 newtons (N) of weight are present for every kilogramme of mass.

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Answer:

The spacecraft produced an upward force of thrust that was greater than the downward force of gravity.

Explanation:

The graph shows a car’s velocity over time, What is the car’s acceleration between 6 and 7 seconds

Answers

Based on the given graph of the car’s velocity over time, the car’s acceleration between 6 and 7 seconds is 0 m/s².

What is the acceleration of a body?

The acceleration of a body is defined as the rate of change of velocity of a body with time.

Mathematically, the acceleration of a body is given below as follows:

Acceleration = change in velocity / change time

The change in the velocity of a body is given as follows:

Change in the velocity = Final velocity  - initial velocity

A velocity-time graph is a graph that plots the velocity of a body against the time taken by the body to move. The slope of a velocity-time graph gives the acceleration of the body.

The acceleration of the car is calculated from  the given velocity-time graph as follows:

Acceleration = (60 - 50) m/s / (7 - 6) s

Acceleration = 10 m/s²

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. An electron has a de Broglie wavelength of 2.80 *
10-10 m. Determine (a) the magnitude of its momentum and (b) its
kinetic energy (in joules and in electron volts

Answers

The de- Broglie wavelength of 2.80× 10⁻¹⁰ m is associated with a momentum of 2.36 × 10⁻²⁴ Kg m/s. The kinetic energy will be 3.07 × 10⁻¹⁸ J which is equal to 19.015 ev.

What is de-Broglie wavelength?

De-Broglie proposed  the dual nature of matter which stated that matter can behave as both wave and particle. For a matter wave, the wavelength of the wave will be the ratio of the Planck's' constant h and its momentum p.

thus, λ = h/p

Given the wavelength = 2.80× 10⁻¹⁰ m.

momentum p = h/λ

= 6.62 × 10 ⁻³⁴ / (2.80× 10⁻¹⁰ m)

=  2.36 × 10⁻²⁴ Kg m/s

The kinetic energy ke = 1/2 mv² = p² /2m.

mass of an electron = 9.1 × 10 ⁻³⁴ Kg.

hence, Ke =  (2.36 × 10⁻²⁴ Kg m/s )² /  9.1 × 10 ⁻³⁴ Kg

                 = 3.07 × 10⁻¹⁸  J.

1 J = 6.24 × 10¹⁸ ev.

thus, KE in ev = 3.07 × 10⁻¹⁸  J ×  6.24 × 10¹⁸ ev = 19 ev.

Therefore, the kinetic energy of the electron is 19 ev.

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You have two identical capacitors and an external potential
source. (a) Compare the total energy stored in the capacitors when
they are connected to the applied potential in series and in parallel.
(b) Compare the maximum amount of charge stored in each case.
(c) Energy storage in a capacitor can be limited by the inaximuni
electric field between the plates. What is the ratio of the electric
field for the series and parallel combinations?

Answers

Four times as much energy is retained in the parallel capacitors connection than in the capacitors connection.

What does the word "energy" mean?

People have figured out how to transform energy from one type to the other and use it to accomplish tasks, making modern civilization possible.

Briefing:

Given two identical capacitor

i.e they have the same capacitance C

A) Now for series connection,

1/Ceq=1/C+1/C

1/Ceq=(1+1)/C

1/Ceq=2/C

Then, Ceq=C/2

Ceq=½C

So the energy stored in a capacitor is given as

Us= ½CeqV²

Us=½×½CV²

Us=¼CV²

Now, for parallel connection

Ceq=C+C

Ceq=2C

Then,

Energy is given as

Up=½CeqV²

Up=½×2CV²

Up=CV²

Comparing this to series

Us=¼CV², since CV²=Up

Then, Us=¼Up

Up=4Us

Up/Us=4

As a result, the energy saved in the parallels capacitor connection is four times that of the series capacitor connections.

B) Charges

to connect in series

We are aware that the same charge travels in series. Now that they are the same capacitance and are in series, the voltage differential is V/2, so they will split the voltage.

And the charge is given as

Q=CeqV

Qs=½CV

Qs=½CV for each capacitor

Then the total charge will be

Qs=½CV×2.

Qs=CV

Now, for parallel connection

The charge for parallel is given as

Q=CeqV

Qp=2CV

Now comparing

Qp/Qc=2CV / CV

Qp/Qc=2

The maximum charge of the parallel is four times that of the series again

C) Electric field is given as

E=V/d

Ep=V/d

Due to their identical capacitance, they will split the voltage in a series, where the voltage differential is now V/2.

Es=V/2d.

Then,

Ep/Es=V/d ÷ V/2d

Ep/Es= 2

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Which statement best completes the diagram?
Constitutional Limits on
Goverment Power
States have some independence from the federal government.
Citizens have rights that the government cannot take away.
• A. Citizens are not forced to pay taxes they do not support.
B. Congress can only pass a set number of laws per year.
• C. Branches of government can check each other's actions.
• D. Local governments are free to ignore federal laws.
SUBMIT

Answers

Answer: It is b.

Explanation:

2. What is the force between two aluminum spheres if one has a charge of 3x10-5C
the other had a charge of 9x10-5C and they are 0.05 m from each other?

Answers

The force between the charges is 9.25 × 10^3 N.

What is Coulomb's Law?

Coulomb's law states that the force of attraction or repulsion between two charged bodies is inversely proportional to the square of the distance between them and directly proportional to the product of their charges.

That is , F=K (q1 q2)÷ r²

In this problem,

q1 = 3x10^-5 C

q2= 9x10^-5 C

r =  0.05 m

Substituting ,

F = (9×10^9 × 3x10^-5 × 9x10^-5 )÷( 0.05)²

=  9.25 × 10^3 N

Therefore the force between the charges is 9.25 × 10^3 N

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How do the factors affecting friction and how to increase/decrease friction?

Answers

Answer:

Factors Affecting Friction

Friction is dependent on the smoothness or roughness of the two surfaces that are in contact with each other. When the surface is smooth, the friction between the two reduces as there is not much interlocking of irregularities. While the surface is rough, friction increases.

Explanation:

PLS HELP URGENT HAVE TEST SOON The moon orbits the Earth every 27 days. The distance between the Earth and the moon is 3.84 x 10^8 m. What is the tangential velocity of the moon?

Round answer to nearest whole number. Your answer should be in units of m/s.

Answers

Answer: 27

Explanation:

The mass of the Earth is approximately

6.02 × 10^24

Solution:

First Converting 27.32 days to seconds

Which statement best explains the backward motion of the boat as the person moves forward?
A.Every mass exerts a force on every other mass.

B. An object at rest tends to stay at rest.

C.Friction opposes the motion of an object.

D. For every action there is an equal and opposite reaction.

Answers

According to Newton's third law, For every action there is an equal and opposite reaction.

a radio antenna broadcasts a 1.0 mhz radio wave with 25 kw of power. assume that the radiation is emitted uniformly in all directions.

Answers

The intensity of the waves from the antena was found to be 2.0x10^-6 w/m^2

defiine antena ?

A metallic structure that collects and/or transmits radio electromagnetic waves is known as an antenna. Antennas come in different forms and sizes, from little ones for watching TV on your roof to massive ones that catch signals from satellites millions of kilometres away.

Space Communications and Navigation (SCaN) employs parabolic antennas, which are unique bowl-shaped antennas that concentrate signals at a single point. The antennas' bowl shape allows them to capture and transmit electromagnetic radiation. In order to catch and transmit the signal, these antennas move horizontally (measured in hour angle/declination) and vertically (measured in azimuth/elevation).

SCaN contains more than 65 antennas that assist gather and send data to and from space satellites.

I=P/4πr^2

i=25000/4π(30000)^2

≈2.0x10^-6 w/m^2

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Find the magnitude of velocities vA and vB in the figure below, where,
= 24.0° and vtot = 5.96 m/s.

Answers

The magnitude of velocity A is 3.06 m/s and the magnitude of velocity B is 3.5 m/s.

What is the magnitude of velocity A and B?

The magnitude of velocity  A and B in the given figure is determined by applying parallelogram law of vector addition.

Vr² = Va² + Vb²  - 2(Va)(Vb) cosθ

where;

Vr is the resultant velocity or total velocityVa is the velocity of AVb is the velocity of Bθ is the angle between velocity A and velocity B

The angle between the two velocities is calculated as follows;

θ = 180 - (23⁰ + 26.5⁰)

θ = 130.5⁰

Apply sine rule and determine the values of each of the velocities.

Va / sin(23) = V(tot) / sin(130.5)

Va / sin(23) = 5.96 / sin(130.5)

Va = 5.96 (sin 23 / sin 130.5)

Va = 3.06 m/s

Vb / sin(26.5) = V(tot) / sin(130.5)

Vb = 5.96 (sin 26.5 / sin 130.5)

Vb = 3.5 m/s

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A student is spinning a rubber stopper of unknown mass around his head with a
velocity of 9 m/s that has a centripetal force of 10 N and a radius of 0.75m. It takes
0.50 s to make one revolution. What is the mass of the stopper?

Answers

The mass of the stopper is 92.59 g.

What is centripetal force?

According to the definition of centripetal force, this force is applied to an object moving curvilinearly and is targeted at the axis of rotation or the center of curvature.

Given that:  velocity of the stopper: v = 9 m/s.

Radius of the circle: r = 0.75 m

centripetal force: F = 10 N.

From F = mv²/r; we get:

The mass of the stopper: m = Fr/v²

= (10×0.75)/(9²) kg

= 0.09259 kg

= 92.59 g.

Hence, the mass of it is 92.59 gram.

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Vocabulary Terms - Define the following terms
1. Scalar-
2. Vector-
3. Magnitude-
4.1 Vectors in Physics Worksheet
4. Vector Components-
Conceptual Questions
5. What distinguishes a vector from a scalar?
6. What does the magnitude of a vector refer to?

Answers

Answer:
1. Scalar- a physical quantity that is completely described by its magnitude
2. Vector- a vector is a variable quantity, such as force, that has size and derection
3. Magnitude- large size or great importance.
4. Vector Components- allow us to break a single vector quad tity into two (or more) scalar quantities with which we have more mathematical experience
5. What distinguishes a vector from a scalar?
Ans: Vectors have magnitude and derection, scalars only have magnitude.
6. What does the magnitude of a vector refer to?
Ans: the magnitude of a vector is the length of a vector. The magnitude of the vector a is denoted as ||a||

Explanation:
Hopes it help


if you throw or launch the apple at a fast enough speed the time required for it to slow to a stop becomes infinite at this speed or faster it's not coming back we call this the escape speed at the surface of earth escape speed is 11 km x 25,000 miles per hour at this speed how long would it take to travel from los angeles to new york 4000 km brainly

Answers

The time would it take to travel from Los Angeles to New York 2.75 * 10^-3 s

What is the time taken?

We call the velocity that is required for an object to escape the gravitational pull of the earth the escape velocity of the satellite. When a satellite has this velocity, the satellite is now able to freely escape from the earth and is now able to get into the outer space.

On the other hand, we would also have to remember the formula for the speed off an object. We have to remind ourselves that speed is a scalar quantity and this implies that the direction of the speed is not important when we are discussing the speed of a body.

Thus, we know that;

Speed =  distance/time

time = distance/speed

time = 11 km/s/ 4000 km

time = 2.75 * 10^-3 s

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in the drake equation, a value of flife that is close to one and a value of fciv that is close to zero would imply .

Answers

In the drake equation, a value of flife that is close to one and a value of fciv that is close to zero would imply primitive life is common but intelligent life is rare.

What is the drake equation?

The Drake equation has been criticized, but not for the equation itself, rather for the fact that many of its estimated values are highly speculative, with the cumulative multiplicative effect being that the uncertainty associated with any derived value is so great that the equation cannot be used to make conclusive judgments.

The Drake equation is a probabilistic method for calculating the number of extraterrestrial civilizations in the Milky Way Galaxy that are currently active and capable of communication.

Frank Drake created the equation in 1961, not to count the number of civilizations but rather to encourage discussion among scientists at the inaugural conference on the hunt for extraterrestrial intelligence (SETI). The equation encapsulates the key ideas that researchers must take into account while debating the possibility of other radio-communicative life. It is better to think of it as an estimation rather than a sincere endeavor to come up with a specific number.

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Please see the attached image

Answers

The moment of inertia of the flat square is MA²/6

What is moment of inertia?

The moment of inertia of a body is a property of the body which shows its ability to ritate about an axis.

What is the moment of inertia of the flat square?

To find the moment of inertia of the flat square through its center of mass, we know that the moment of  inertia of  a rectangular slab is given by

I = M(a² + b²)/12 where

M = mass of slab and a and b = side lengths

Now, for a flat square a = b. so,its moment of inertia is I = M(a² + b²)/12

I = M(a² + a²)/12

= 2Ma²/12

= Ma²/6

Now for the given flat square, we have that

its mass equals M and its length equals A.

So, substituting these into the equation of moment of inertia for the flat square, we have that

The moment of inertia of the flat square is given by

I = Ma²/6

I = MA²/6

So, moment of inertia is MA²/6

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An insect lands 0.1m from the centre of a turn table while the record is turning at 55 rev/min at what linear speed will the insect be carried
collision with the near stationary photograph

Answers

The linear speed will be the insect be 0.5759 meter/second carried collision with the near stationary photograph.

What is speed?

Speed is distance travelled by the object per unit time. Due to having no direction and only having magnitude, speed is a scalar quantity With SI unit meter/second.

Given that an insect lands 0.1m from the center of the turn table.

Rotational speed of the turn table = 55 rev/min

= (55×2π/60) rad/second

= 5.759 rad/second.

Hence, the speed of the insect be = Rotational speed × length

= 5.759 rad/second × 0.1 M.

= 0.5759 meter/second.

Therefore, the speed of the insect be 0.5759 meter/second.

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An ideal gas undergoes a process during which the
pressure is kept directly proportional to the volume, so that p = aV,
where a is a positive constant. If the volume changes from V1 to V2,
how much work is done by the gas? Express your answer in terms of
V1, V2, and a.

Answers

If the volume changes in an ideal gas from V1 to V2, that has p = aV. Then the work done by the gas is W = a [(V₂²-V₁²)÷2].

The work done on a system is a measure of the energy transferred from the system to the surroundings or vice versa.

Work Formulation:  W = pΔV = p(V₂ - V₁)

The formula W = pΔV can only be used to calculate the work of a gas at constant pressure (isobaric process).

If the gas pressure changes, the work W must be calculated in an integral way. In general, work is calculated by the following integral equation.

                                    W = ∫p dV

The work done by a gas system undergoing a cyclical process (its p-V graph is given) is equal to the area loaded by the cycle.

The pressure function p = aV

The initial volume of the gas is V₁

The final volume of the gas is V₂

The equation for the work done can be given by,

[tex]W = \int\limits^{v_2}_{v_1} {pd}V[/tex]

Substitute the pressure value given in the problem to find the work done by the gas.

[tex]W = \int\limits^{v_2}_{v_1} {aV}dVW[/tex]

[tex]W = a\int\limits^{v_2}_{v_1} {V}dVW[/tex]

[tex]W = a{ [\frac{v^2}{2} ]}^{v_2}_{v_1}[/tex]

[tex]W = a[\frac{V_2^2-V^2_1}{2} ][/tex]

Then the work done by the gas is  [tex]a[\frac{V_2^2-V^2_1}{2} ][/tex]

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With a 9.0 voltage battery connected with two resistors, one is 10 ohms and the other resistor is at 20 ohms, what is the voltage drop across the battery?

A) -1.00v
B) -3.00v
C) -9.00v
D) -12.00v

Answers

With a 9.0 voltage battery connected with two resistors, one is 10 ohms and the other resistor is at 20 ohms the voltage drop across the battery 1 volt. Thus, option A is correct.

What will be the voltage supplied?

Given data

voltage supplied Vs= 1.5 volts

resistance R1= 1000 ohms

resistance R2= 500 ohms

The total resistance is

Rt= 1000+ 500

Rt= 1500 ohms

In series connection the current is the same for all components while the voltage divides across all components,the voltages consumed by each individual resistance is equal to the source voltage.

Therefore, With a 9.0 voltage battery connected with two resistors, one is 10 ohms and the other resistor is at 20 ohms the voltage drop across the battery 1 volt. Thus, option A is correct.

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which of the following modifications did maxwell have to include in the modified version of ampere's law to make it valid for all situations?

Answers

Option A. Introducing a displacement current. Maxwell had to introduce a displacement current in the modified version of Ampere's Law in order to make it valid for all situations.

Introducing a Displacement Current in Ampere's Law

The displacement current is a modification to the traditional Ampere's Law that takes into account the changing electric field due to changing magnetic fields. Maxwell's modification was necessary to account for the effect of electromagnetic waves, making the law applicable in all situations. This displacement current is related to the Faraday Law, as it is required for the conservation of charge.

Since the question is not complete, here's the full task:

Which of the following modifications did Maxwell have to include in the modified version of ampere's law to make it valid for all situations?

Give me the options:

A. Introducing a displacement currentB. Introducing a vector potentialC. Introducing a magnetic fieldD. Introducing a Faraday law

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1. What is the gravitational attraction force between the earth and the moon? What is the force of gravity between the earth and the sun?

Answers

The gravitational attraction force between the Earth and the Moon is approximately 1.982 × 10^20 Newtons.

The gravitational attraction force between the Earth and the Sun is approximately 3.52 × 10^22 Newtons.

The gravitational attraction between two objects can be calculated using Newton's law of universal gravitation, which states that the force of gravity between two objects is directly proportional to the product of their masses and inversely proportional to the square of the distance between their centers. The equation for the gravitational force (F) is given by:

F = (G * m1 * m2) / r^2

Where:

F is the gravitational force between the objects,

G is the gravitational constant (approximately 6.67430 × 10^-11 m^3 kg^-1 s^-2),

m1 and m2 are the masses of the two objects, and

r is the distance between the centers of the two objects.

Gravitational attraction between Earth and Moon:

The mass of the Earth is approximately 5.972 × 10^24 kg, and the mass of the Moon is approximately 7.342 × 10^22 kg. The average distance between the Earth and the Moon is about 384,400 kilometers (or 384,400,000 meters).

Plugging in these values into the equation, we can calculate the gravitational attraction force between the Earth and the Moon:

F = (G * m1 * m2) / r^2

= (6.67430 × 10^-11 * 5.972 × 10^24 * 7.342 × 10^22) / (384,400,000)^2

Calculating this, we find that the gravitational attraction force between the Earth and the Moon is approximately 1.982 × 10^20 Newtons.

Gravitational attraction between Earth and Sun:

The mass of the Sun is about 1.989 × 10^30 kg, and the average distance between the Earth and the Sun (known as an astronomical unit or AU) is about 149.6 million kilometers (or 149,600,000,000 meters).

Using the same equation as above:

F = (G * m1 * m2) / r^2

= (6.67430 × 10^-11 * 5.972 × 10^24 * 1.989 × 10^30) / (149,600,000,000)^2

Calculating this, we find that the gravitational attraction force between the Earth and the Sun is approximately 3.52 × 10^22 Newtons.

During the investigation of a house fire, you notice the V-shaped smoke pattern that points to the downstairs living room just left of the front door. There, you find a number of ash trays near an old lounge chair. You also find the wood frame alligator skin, exhibit A in the kitchen above the baking cabinet that stores oil and lard, and wood frame alligator skin, exhibit B, in the living room.

Explain where the fire likely started and how you know,
what the alligator skin evidence tells you, and
what the explanation might be for the seemingly conflicting evidence.
Would you suspect arson or other causes? Why?

Answers

Answer: During the investigation of a house We notice the v shaped smoke pattern that points to the downstairs living room just left of the front door.

What is Fire?

--fire is a type of oxidation, which is the combination of oxygen with other substances to produce new substances.

--To start fire, the minimum temperature needed to spontaneously ignite fuel, known as ignition temperature, must be reached.

likely be the lowest point showing the most intense characteristics of burning.

Fire Clues:

Point of Origin -Burn patterns and other damage can help determine the point of origin, or the location where the fire started.

Char Patterns -

Created by very hot fires that burn very quickly and move fast along its path, so that there can be sharp lines between what is burned and what isn't.

A char pattern on a door would help an investigator determine which side of the door the fire was on.

A char pattern on the floor would help investigators determine the use of an accelerant and its path.

V-Patterns -

Fire burns up, in a V-shaped pattern, so a fire that starts at an outlet against a wall leaves a char pattern that points to the origin.

A very narrow V-shape might indicate a fire that was hotter than normal, such as one helped along by an accelerant.

A wide V-shape might indicate a fire that was slow burning.

A U-shape could indicate that there was a "pool of origin" rather than a point of origin.

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What force is required to stop a 1100- kg car in a distance of 0.20 m if it is initially moving at 2.2 m/s ?

Answers

The force required to stop a car of 1100 kg which is moving at a speed of 2.2 m/s is 13310 N.

What is Force?

A force in physics is an input that has the power to change an object's motion. A mass-containing object's velocity can vary, or accelerate, as a result of a force.

Intuitively, a push or a pull can also be used to describe forces. Being such a vector quantity, a force does have magnitude and direction. The SI unit metric newton is used to measure it (N). The letter F stands for force.

As per the given information in the question,

Mass of the car, m = 1100 kg

Distance, s = 0.20 m

Final velocity, v = 2.2 m/s.

Use the equation of motion,

v² - u² = 2as

2.2² - 0² = 2a (0.20)

4.84 = 0.4a

a = 12.2 m/s²

F = ma

F = 1100 × 12.2

F = 13310 N

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