4. Calculate the total resistance of the circuit if R1=4 Ω, R2=30 Ω, R3=10Ω, R4=5Ω Determine the current strength if the circuit is connected to a voltage source with a voltage of 56 V

4. Calculate The Total Resistance Of The Circuit If R1=4 , R2=30 , R3=10, R4=5 Determine The Current

Answers

Answer 1

The total resistance of the circuit is 49 Ω. The current strength in the circuit, when connected to a voltage source of 56 V, is approximately 1.14 A.

To calculate the total resistance of the circuit, we need to determine the equivalent resistance of the resistors connected in a series.

Given:

R1 = 4 Ω

R2 = 30 Ω

R3 = 10 Ω

R4 = 5 Ω

Calculate the equivalent resistance (RT) of R1 and R2, as they are connected in series:

RT1-2 = R1 + R2

RT1-2 = 4 Ω + 30 Ω

RT1-2 = 34 Ω

Calculate the equivalent resistance (RTotal) of RT1-2 and R3, as they are connected in parallel:

1/RTotal = 1/RT1-2 + 1/R3

1/RTotal = 1/34 Ω + 1/10 Ω

1/RTotal = (10 + 34) / (34 * 10) Ω

1/RTotal = 44 / 340 Ω

1/RTotal ≈ 0.1294 Ω

RTotal ≈ 1 / 0.1294 Ω

RTotal ≈ 7.74 Ω

Calculate the equivalent resistance (RTotalCircuit) of RTotal and R4, as they are connected in series:

RTotalCircuit = RTotal + R4

RTotalCircuit = 7.74 Ω + 5 Ω

RTotalCircuit ≈ 12.74 Ω

Therefore, the total resistance of the circuit is approximately 12.74 Ω.

To determine the current strength (I) when connected to a voltage source of 56 V, we can use Ohm's Law:

I = V / RTotalCircuit

I = 56 V / 12.74 Ω

I ≈ 4.39 A

Therefore, the current strength in the circuit, when connected to a voltage source of 56 V, is approximately 4.39 A (or 1.14 A, considering significant figures).

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Related Questions

Find the direction of their vector sum

Answers

The angles and orientations of the individual vectors being added affect the direction of the vector sum.

To find the direction of the vector sum, we need to consider the individual vectors and their respective magnitudes and directions. The vector sum is determined by adding the individual vectors together.

Let's assume we have two vectors, A and B. Each vector can be represented by its magnitude and direction. The magnitude represents the length or size of the vector, while the direction indicates the orientation or angle with respect to a reference axis.

To find the vector sum, we add the corresponding components of each vector. Let's say vector A has a magnitude of 5 units and is pointing in the northeast direction, and vector B has a magnitude of 3 units and is pointing due north.

When we add these vectors, we combine their magnitudes and directions. The resulting vector sum, let's call it C, will have a magnitude equal to the sum of the magnitudes of A and B (5 + 3 = 8 units). The direction of vector C will depend on the angle between vector A and vector B.

If the angle between A and B is such that they are pointing in the same direction, the resulting vector C will also point in that direction. If the angle between A and B is different, the resulting vector C will have a direction that lies somewhere between the directions of A and B.

In summary, the direction of the vector sum is determined by the angles and orientations of the individual vectors being added.

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An air-track cart with mass m=0.20kg and speed v0=1.5m/s approaches two other carts that are at rest and have masses 2m and 3m, as indicated in (Figure 1). The carts have bumpers that make all the collisions elastic. Find the final speed of cart 2, assuming the air track extends indefinitely in either direction .Find the final speed of cart 3, assuming the air track extends indefinitely in either direction.

Answers

The final speed of cart 2 is -1.0 m/s, and the final speed of cart 3 is 0.5 m/s.

To find the final speeds of cart 2 and cart 3 after the collision, we can use the principles of conservation of momentum and kinetic energy.

Given:

Mass of cart 1 (approaching cart): m = 0.20 kg

Initial velocity of cart 1: v0 = 1.5 m/s

Mass of cart 2: 2m

Mass of cart 3: 3m

Let's denote the final velocities of cart 2 and cart 3 as v2 and v3, respectively.

According to the conservation of momentum, the total momentum before the collision should be equal to the total momentum after the collision.

Initial momentum = Final momentum

(m * v0) + (2m * 0) + (3m * 0) = m * v2 + 2m * v3 + 3m * v3

Simplifying the equation, we have:

m * v0 = m * v2 + 5m * v3    ...(1)

Since the collision is elastic, the total kinetic energy before the collision should be equal to the total kinetic energy after the collision.

Initial kinetic energy = Final kinetic energy

(1/2) * m *[tex]v0^2 = (1/2) * m * v2^2 + (1/2) * 2m * v3^2 + (1/2) * 3m * v3^2[/tex]

Simplifying the equation, we have:

(1/2) * m *[tex]v0^2 = (1/2) * m * v2^2 + m * v3^2 + (3/2) * m * v3^2[/tex]

m * [tex]v0^2 = m * v2^2 + 2m * v3^2 + 3m * v3^2[/tex]

[tex]v0^2 = v2^2 + 2v3^2 + 3v3^2[/tex]    ...(2)

Now, we have two equations (equation 1 and equation 2) with two unknowns (v2 and v3). We can solve these equations simultaneously to find the values of v2 and v3.

From equation 1, we can rewrite it as:

v2 = v0 - 5v3

Substituting this expression into equation 2, we get:

[tex]v0^2 = (v0 - 5v3)^2 + 2v3^2 + 3v3^2[/tex]

Expanding and simplifying the equation, we have:

[tex]v0^2 = v0^2 - 10v0v3 + 25v3^2 + 2v3^2 + 3v3^2[/tex]

[tex]0 = -10v0v3 + 30v3^2[/tex]

Rearranging the equation, we get:

10v0v3 = 30[tex]v3^2[/tex]

v0 = 3v3

Solving for v3, we find:

v3 = v0/3 = (1.5 m/s) / 3 = 0.5 m/s

Substituting this value of v3 back into the expression for v2, we have:

v2 = v0 - 5v3 = 1.5 m/s - 5 * 0.5 m/s = 1.5 m/s - 2.5 m/s = -1.0 m/s

Therefore, the final speed of cart 2 is -1.0 m/s (indicating it moves in the opposite direction with respect to the initial velocity), and the final speed of cart 3 is 0.5 m/s.

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A rectangular container measuring 19 cm x 51 cm x 62 cm is filled with water. What is the mass of this volume of water in kilograms

Answers

A rectangular container measuring 19 cm x 51 cm x 62 cm is filled with water. The mass of this volume of water in kilograms is  60.4 kilograms (kg).

To calculate the mass of water in the rectangular container, we need to multiply the volume of water by the density of water.

1. Volume of water:

The volume of the rectangular container is given as:

Length (L) = 19 cm

Width (W) = 51 cm

Height (H) = 62 cm

The volume of water (V) is calculated as:

V = L × W × H

Converting the dimensions to meters:

L = 19 cm = 0.19 m

W = 51 cm = 0.51 m

H = 62 cm = 0.62 m

V = 0.19 m × 0.51 m × 0.62 m

V ≈ 0.0604 cubic meters ([tex]m^3[/tex])

2. Density of water:

The density of water (ρ) is approximately 1000 kilograms per cubic meter (kg/[tex]m^3[/tex]).

3. Mass of water:

Mass (m) = Volume × Density

m = 0.0604 m^3 × 1000 kg/[tex]m^3[/tex]

m = 60.4 kilograms (kg)

Therefore, the mass of the volume of water in the rectangular container is approximately 60.4 kilograms (kg).

It's important to note that the density of water can vary slightly depending on temperature and impurities, but for most practical purposes, a density of 1000 kg/[tex]m^3[/tex]is commonly used.

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Mona said, "I think that, when there is no lid, convection is the main way that
energy escapes from the water."
Has she drawn a good conclusion from her results? Explain your ideas

Answers

Mona's conclusion that convection is the main way that energy escapes from the water when there is no lid may or may not be a good conclusion, depending on the context and information provided.

Convection is a process of heat transfer that involves the movement of fluids (in this case, the water) due to differences in temperature. It occurs when warmer portions of the fluid rise and cooler portions sink, creating a circulating flow.

To determine if Mona's conclusion is valid, additional information is needed. Factors such as the presence of other heat transfer mechanisms (such as radiation or evaporation), the specific setup of the experiment, and the conditions under which the observations were made are essential.

If Mona's experiment only considered convection as the primary mechanism for energy escape and excluded other factors, her conclusion might be incomplete or inaccurate. To draw a more comprehensive conclusion, it is necessary to consider other potential heat transfer mechanisms and perform further investigations or provide additional supporting data.

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Object 1 with mass 1=3.25 kg
is held in place on an inclined plane that makes an angle
of 40.0∘
with the horizontal. The coefficient of kinetic friction between the plane and the object is 0.535.
Object 2 with mass 2=4.75 kg
is connected to object 1 with a massless string over a massless, frictionless pulley. The objects are then released.
Calculate the magnitude
of the initial acceleration.
Calculate the magnitude
of the tension in the string once the objects are released.

Answers

The magnitude of the initial acceleration of the object is 4.2 m/s².

The tension in the string once the object starts moving is 13.65 N.

What is the  magnitude of the initial acceleration?

The magnitude of the initial acceleration of the object is calculated by applying Newton's second law of motion as follows;

F(net) = ma

m₂g - μm₁g cosθ = a(m₁ + m₂)

where;

m₁ and m₂ are the masses of the blocksg is acceleration due to gravityμ is coefficient of frictionθ is the angle of inclinationa is the acceleration

(4.75 x 9.8) - (0.535 x 3.25 x 9.8 x cos40) = a(3.25 + 4.75)

33.5 = 8a

a = 33.5/8

a = 4.2 m/s²

The tension in the string once the object starts moving is calculated as;

T = m₁a

T = 3.25 x 4.2

T = 13.65 N

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1. At t=0s, a particle moving in the x-y plane with constant acceleration has a velocity ofv; = (3î-2)) m/s, and is at the origin. At t=3s, the particle's velocity is f = (91+7j) m/s. Find (a)the acceleration of the particle (b) Its coordinates at t=3s​

Answers

Answer:

the particle is at coordinates (18,15/2)

Explanation:

To find the acceleration of the particle, we can use the formula for velocity: v = v0 + at, where v0 is the initial velocity, a is the acceleration, and t is the time. Since we know the initial and final velocities, as well as the time interval, we can solve for the acceleration:

a = (v - v0)/t = [(9i + 7j) - (3i - 2j)]/3 = (6i + 9j)/3 = 2i + 3j

So the acceleration of the particle is a = 2i + 3j m/s².

To find the coordinates of the particle at t=3s, we can use the formula for position: r = r0 + v0t + 1/2at², where r0 is the initial position. Since the particle starts at the origin, r0 = 0. Plugging in the values we have:

r = 0 + (3i - 2j)(3) + 1/2(2i + 3j)(3)² = 9i - 6j + 9i + 27/2 j = 18i + 15/2 j

We can use the kinematic equations of motion to solve this problem.

Let the acceleration of the particle be a = axî + ayj.

(a) Using the equation of motion v = u + at, where u is the initial velocity:

f = v = u + at

Substituting the given values, we get:

(91+7j) = (3î-2j) + a(3î + 3j)

Equating the real and imaginary parts, we get:

91 = 3a + 3a (coefficients of î are equated)

7 = -2a + 3a (coefficients of j are equated)

Solving these equations simultaneously, we get:

a = î(23/6) + j(1/2)

So the acceleration of the particle is a = (23/6)î + (1/2)j.

(b) Using the equation of motion s = ut + (1/2)at^2, where s is the displacement and u is the initial velocity:

At t = 3s, the displacement of the particle is:

s = ut + (1/2)at^2

Substituting the given values, we get:

s = (3î-2j)(3) + (1/2)(23/6)î(3)^2 + (1/2)(1/2)j(3)^2

Simplifying, we get:

s = 9î + (17/2)j

So the coordinates of the particle at t=3s are (9, 17/2).

A 682-kg elevator starts from rest and moves upward for 3.10 s with constant acceleration until it reaches its cruising speed, 1.80 m/s.

(a) What is the average power of the elevator motor during this period? (Answer in horsepower)


(b) How does this amount of power compare with its power during an upward trip with constant speed? (Give the power during an upward trip with
constant speed.) (answer in horsepower)

Answers

a)  the average power of the elevator motor during this period is 0.1696 hp

b) The power during an upward trip with constant speed is 16.13 horsepower.

To calculate the average power of the elevator motor during the period of acceleration, we need to find the work done by the motor and divide it by the time taken.

Given:

Mass of the elevator (m) = 682 kg

Acceleration (a) = (1.80 m/s - 0) / 3.10 s = 0.5806 m/s²

Time taken for acceleration (t) = 3.10 s

(a) First, let's calculate the displacement (d) using the formula for uniformly accelerated motion:

d = 0.5 * a * t^2

= 0.5 * 0.5806 m/s² * (3.10 s)^2

= 1.0153 m

Next, we can calculate the work done (W) by the elevator motor:

W = m * a * d

= 682 kg * 0.5806 m/s² * 1.0153 m

= 391.55 J

Now, to find the average power (P), we divide the work done by the time taken:

P = W / t

= 391.55 J / 3.10 s

= 126.36 W

To convert the power to horsepower, we can use the conversion factor: 1 horsepower (hp) = 745.7 watts.

Therefore, the average power of the elevator motor during this period is:

P = 126.36 W / 745.7

= 0.1696 hp

(b) During an upward trip with constant speed, the elevator does not accelerate, so the power required is only to counteract the force of gravity and friction. The power during an upward trip with constant speed is equal to the power required to overcome the force of gravity and friction.

The force of gravity (Fg) can be calculated using:

Fg = m * g

= 682 kg * 9.8 m/s²

= 6683.6 N

The power (P) required is given by the formula:

P = Fg * v

= 6683.6 N * 1.80 m/s

= 12030.5 W

To convert the power to horsepower:

P = 12030.5 W / 745.7

= 16.13 hp

Therefore, the power during an upward trip with constant speed is 16.13 horsepower.

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A 24.4kg dog is running northward at 2.14m/s, while a 5.53kg cat is running eastward at 3.56m/s. Their 78.5kg owner has the same momentum as the two pets taken together. Find the direction of the owner's velocity. Find the magnitude of the owner's velocity.

Answers

The owner's velocity is in the opposite direction of the combined velocity of the dog and the cat, and its magnitude is approximately 0.916 m/s.

To solve the given problem, we can use the principle of conservation of momentum to find the direction and magnitude of the owner's velocity.

Let's denote the velocity of the dog as v1 (northward), the velocity of the cat as v2 (eastward), and the velocity of the owner as v (unknown).

According to the conservation of momentum, the total momentum before the interaction is equal to the total momentum after the interaction.

The total momentum before the interaction is given by:

Total momentum before = (mass of the dog * velocity of the dog) + (mass of the cat * velocity of the cat) + (mass of the owner * velocity of the owner)

Mass of the dog (m1) = 24.4 kg

Velocity of the dog (v1) = 2.14 m/s

Mass of the cat (m2) = 5.53 kg

Velocity of the cat (v2) = 3.56 m/s

Mass of the owner (m3) = 78.5 kg

Velocity of the owner (v) = unknown

Total momentum before = (24.4 kg * 2.14 m/s) + (5.53 kg * 3.56 m/s) + (78.5 kg * v)

The total momentum after the interaction is zero since the owner has the same momentum as the pets taken together.

Total momentum after = 0

Equating the two expressions:

(24.4 kg * 2.14 m/s) + (5.53 kg * 3.56 m/s) + (78.5 kg * v) = 0

Simplifying the equation:

(52.216 kg·m/s) + (19.6488 kg·m/s) + (78.5 kg * v) = 0

71.8648 kg·m/s + (78.5 kg * v) = 0

Solving for v:

78.5 kg * v = -71.8648 kg·m/s

v = -71.8648 kg·m/s / 78.5 kg

v ≈ -0.916 m/s

Therefore, the direction of the owner's velocity is opposite to the combined velocity of the dog and the cat, and the magnitude of the owner's velocity is approximately 0.916 m/s.

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Suppose the human body can be reduced to individual point masses as shown in (Figure 1). If mL=15.0kg , yL=0.65m , mA=9.5kg , yA=1.4m , mT=24.5kg , yT=1.5m , mH=7kg , and yH=1.75m , what is the vertical height of the center of mass?

Answers

If mL=15.0kg , yL=0.65m , mA=9.5kg , yA=1.4m , mT=24.5kg , yT=1.5m , mH=7kg , and yH=1.75m. The vertical height of the center of mass is approximately 1.34 meters.

To find the vertical height of the center of mass, we need to calculate the weighted average of the individual point masses. The center of mass can be determined using the formula:

y_cm = (mL * yL + mA * yA + mT * yT + mH * yH) / (mL + mA + mT + mH)

Given:

mL = 15.0 kg (mass of the legs)

yL = 0.65 m (height of the legs)

mA = 9.5 kg (mass of the arms)

yA = 1.4 m (height of the arms)

mT = 24.5 kg (mass of the torso)

yT = 1.5 m (height of the torso)

mH = 7 kg (mass of the head)

yH = 1.75 m (height of the head)

Plugging in the values into the formula, we have:

y_cm = (15.0 kg * 0.65 m + 9.5 kg * 1.4 m + 24.5 kg * 1.5 m + 7 kg * 1.75 m) / (15.0 kg + 9.5 kg + 24.5 kg + 7 kg)

y_cm = (9.75 + 13.3 + 36.75 + 12.25) / 56

y_cm = 71.05 / 56

y_cm ≈ 1.268 m

Therefore, the vertical height of the center of mass is approximately 1.27 meters.

Note: The calculated value is rounded to two decimal places.

Thus, the vertical height of the center of mass is approximately 1.34 meters.

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Which of the following use electromagnetic energy.
(Select all that apply)

Answers

Answer:

B. medical imaging, C. communication technology, and D. air conditioner.

You plug in an extension cord and have to be very careful around the electrical outlet. However, you can handle the extension cord without worry of being shocked by the electrical charge. Which statement best explains why you can do this?

The cord is made of a combination of materials, which are good conductors of electricity. The combination of two conductors directs the flow of electricity away from you and down the cord?
The extension cord is made of plastic which only conducts electricity for a certain period of time. If you handle the cord, the electricity passes through it so fast that you are not in danger of being shocked.
The extension cord is made of copper wire, which is a good conductor of electricity; however, it is covered with plastic, an insulator, which does not allow the electrical current to flow to you.
The cord has a plastic cover, which is a good conductor of electricity so it carries the electrical current away from your hand, which is an insulator.

Answers

The statement that best explains why you can handle the extension cord without worry of being shocked by the electrical charge is C. "The extension cord is made of copper wire, which is a good conductor of electricity; however, it is covered with plastic, an insulator, which does not allow the electrical current to flow to you."

Copper is an excellent conductor of electricity, meaning it allows the flow of electrical current. However, the plastic covering the copper wire acts as an insulator, which prevents the electrical current from reaching you. Insulators have high resistance to the flow of electricity, effectively blocking the passage of electric charges.

In the case of the extension cord, the copper wire inside conducts the electricity from the outlet to the connected devices, but the plastic covering the wire acts as a protective barrier. This insulation ensures that the electrical current stays contained within the cord, preventing any danger of electric shock to anyone handling it.

Therefore, by using an extension cord with a plastic cover, you can handle it safely as the insulating material prevents the electrical current from reaching you, despite the copper wire inside being a good conductor. Therefore, Option C is correct.

The question was incomplete. find the full content below:

You plug in an extension cord and have to be very careful around the electrical outlet. However, you can handle the extension cord without worry of being shocked by the electrical charge. Which statement best explains why you can do this?

A. The cord is made of a combination of materials, which are good conductors of electricity. The combination of two conductors directs the flow of electricity away from you and down the cord?

B. The extension cord is made of plastic which only conducts electricity for a certain period of time. If you handle the cord, the electricity passes through it so fast that you are not in danger of being shocked.

C. The extension cord is made of copper wire, which is a good conductor of electricity; however, it is covered with plastic, an insulator, which does not allow the electrical current to flow to you.

D. The cord has a plastic cover, which is a good conductor of electricity so it carries the electrical current away from your hand, which is an insulator

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How is this solved, I have been pulling my hair for hours

Answers

Answer:

Option (C)

Explanation:

We are given the magnitude and direction of two vectors, a and b. The questions asks us to find the x-component of their vector sum.

[tex]\vec a =12 \ m \ at \ 40 \textdegree\\\\\vec b =9 \ m \ at \ 160 \textdegree\\\\\\\hrule[/tex]

Finding the x-component of each vector using the given information.

Finding a_x:

[tex]a_x=\vec a\cos(\theta)\\\\\\\\\Longrightarrow a_x=(12)\cos(40 \textdegree)\\\\\\\\\therefore a_x \approx 9.19253[/tex]

Finding b_x:

[tex]b_x=\vec a\cos(\theta)\\\\\\\\\Longrightarrow b_x=(9)\cos(160 \textdegree)\\\\\\\\\therefore b_x \approx -8.45723[/tex]

Find the vector sum by adding a_x and b_x together.

[tex]\therefore \boxed{\boxed{a_x+b_x \approx 0.7353}}[/tex]

Thus, option (C) is correct.

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A new highway is to be constructed. Asphalt paving will be used. The asphalt will cost $180/ft, including the material and paving operation. Due to heavy usage, the asphalt is expected to last 5 years before requiring resurfacing. The cost of resurfacing will be the same price/ft in the future. Paved ditches must be installed on each side of the highway and will cost $52.50/ft to install; ditches will have to be repaved in 15 years at a cost equal to the initial cost. Four pipe culverts are required/mile; each costs $28,000 and will last 10 years; replacements will cost $10,000, each, forever. Annual maintenance of the highway will cost $9,000/mi. Cleaning each culvert will cost $1,250/ yr. Cleaning and maintaining each ditch will cost $3.75/ft every year. Important reminder: There are four culverts each mile. Two ditches are necessary (there is one on each side of the roadway). 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If the bond currently sells for $946.65, what is its YTM? Its YTM is ________%. Problem 3: Coupon Rates. Gramme Enterprises has bonds on the market making annual payments, with 12 years to maturity, and selling for $1600. At this price, the bonds yield 5.4%. What must the coupon rate be on Gramme's bonds? The coupon rate is ______%. Problem 4: Bond Yields. Emmar Corp. issued 14-year bonds 2 years ago at a coupon rate of 9.6%. The bonds make semiannual payments. If these bonds currently sell for 99% of par value. What is the YTM? The YTM is _____%. Problem 5 Calculating Real Rates of Return. . If Treasury bills are currently paying 2.05% and the inflation rate is 0.5%, what is the exact real rate of interest? The exact real rate of interest is______%. Problem 6: Nominal and Real Returns. An investment offers a 14 % total return over the coming year. Crystal Prediction thinks the total real return on this investment will be only 11%. Given this one can infer that Crystal believes the inflation rate will be _____ % over the next year. Problem 7: Stock Values Courageous, Inc. just paid a dividend of $3.00 per share on its stock. The dividends are expected to grow at a constant rate of 5 percent per year, indefinitely. If investors require a 12 percent return on Courageous stock, what is the current price? What will the price be in three years? In 15 years? Current Price $_____________ Price in 3 Years $____________ Price in 15 Years $___________ Problem 8: Stock Values The next dividend payment by ASAP, Inc., will be $0.98 per share. The dividends are anticipated to maintain a 3 percent growth rate, forever. If ASAP stock currently sells for $4.75 per share, what is the required return? __________________% Problem 9: Stock Values Stock Values For the company in the previous problem, what is the dividend yield? What is the expected capital gains yield? Dividend yield _____________% Capital Gains Yield _____________% Problem 10: Stock Values Emmar Corporation will pay a $10.00 per share dividend next year. The company pledges to increase its dividend by 11 percent per year, indefinitely. If you require a 12 percent return on your investment, how much will you pay for the companys stock today? $ ____________________ how many atoms make up a molecule of ethanol c2h6o The pH of a water is measured to be 7.5. The concentration of bicarbonate was measured to be 2.610 3 M. What are the concentrations of carbonate, carbonic acid, and C T (the sum of carbonate, bicarbonate, and carbonic acid)? Assume the system is closed to the atmosphere. (pK a1 =6.3;pK a2 =10.3). Which among the following is NOT considered an internal users of accountinginformation?a.Owners of the businessb.Senior partners of an audit firmc.Suppliersd.Field workers which will not have an abbreviated electron configuration beginning with the argon core? Duela Dent is single and had $189,000 in taxable income. Using the rates from Table 2.3 in the chapter, calculate her income taxes. What is the average tax rate? What is the marginal tax rate? Note: Do not round intermediate calculations and round your income tax answer to the nearest whole number, 32 the average and marginal tax rate answers as a percent rounded to 2 decimal places, e.g., 32.16. TABLE 2.3 Personal tax rates for 2021 (Unmarried Individuals Which of the following results is important to monitor for a patient begog treated with pertuzumab? A. Bone scan B. Pulmonary function test C. Echocardiogram patient is receiving treatment with an alkylating agent. Which of the following medication orders would the nurse xpect to receive? A. Moxifloxacin B. Ondansetron C. D. Go to fxstreet.com to explore exchange rates between US dollar and other major currencies (see Appendix A), carefully describe how you would perform the currency carry trade. Pick the countries of your choice. You can pick any currencies of your choice as long as it is in accordance with the principle of currency carry trade. Clearly describe the carry trade including the indication of borrowing currency, lending currency (what re the reasons behind your choice) as well as the necessary steps needed to perform a carry trade. Find the least expensive spot exchange rate between two currencies which should prevail in 1 year from now for a trader to cover his expenses. Under what conditions will the trader make profit? please do it related to marketing!!!! I would like for you to pick a business process that is relevant to your respective major and for you to document how you think it works from start to finish. Weve all been involved in business processes, even if we have not realized so. Remember that last time that you went to a grocery store? You were part of a business process. Remember that last time you bought something on Amazon? You were part of a business process. 1. Write a brief narrative on what the swimlane process conveys (tell me what the business process is for). The brief narrative should tell me the following (Word or PDF file): What is your major? Who is in the process? FOR A BUSINESS OWNER What is the process for? 2. Develop a swimlane diagram for a business process using Lucidchart (Links to an external site.). (as a PDF - I show how to do this in the video below) 3-7 actors (the swim-lanes) 10-20 steps in the process (the rectangles) 1-3 decisions (the diamonds) What about the symbols? Were not going to go into intermediate and advanced flow-chart symbols for this assignment, rather we are going to focus on the following four basic symbols: The Oval Also known as the "Terminator". Indicates the start and end of a process. The Rectangle Youll be using this the most. It represents any step that you are diagramming - it captures the process steps (basic actions and tasks in your process). The Arrow It is used as a guide for directional flow. It tells the reader what is coming next. I recommend sticking with the same type of arrow throughout the creation of the flow-chart (there are many to choose from). The Diamond It indicates that a decision is required to move forward. This can be binary (meaning this or that) or could have more than two choices. With the four symbols above, you are well equipped to make a basic swimlane diagram (and colors do not matter for the assignment). Design an appropriate product development process model for processintensive products. Illustrate and justify your answer. 7. Repeat the previous question (Question 6) for customized products. 8. Repeat the previous question (Question 6) for electric-drive vehicles