Suppose we are given three boxes, Box A contains 20 light bulbs, of which 10 are defective, Box B contains 15 light bulbs, of which 7 are defective and Box C contains 10 light bulbs, of which 5 are defective. We select a box at random and then draw a light bulb from that box at random. (a) What is the probability that the bulb is defective? (b) What is the probability that the bulb is good?
Answer:
0.49
0.51
Explanation:
Probability that bulb is defective :
Let :
b1 = box 1 ; b2 = box 2 ; b3 = box 3
d = defective
P(defective bulb) = (p(b1) * (d|b1)) + (p(b2) * p(d|b2)) + (p(b3) * p(d|b3))
P(defective bulb) = (1/3 * 10/20) + (1/3 * 7/15) + (1/3 * 5/10))
P(defective bulb) = 10/60 + 7/45 + 5/30
P(defective bulb) = 1/6 + 7/45 + 1/6 = 0.4888
= 0.49
P(bulb is good) = 1 - P(defective bulb) = 1 - 0.49 = 0.51
3. Would you characterize yourself as a technophile or a Luddite? Explain, and use examples.
A technophile is someone who is enthusiastic and embraces technology, often seeing it as a positive force for progress and improvement in various aspects of life. Technophiles are usually eager to adopt new technologies and explore their potential benefits.
A technophile might be among the first to purchase and use the latest smartphones, gadgets, or smart home devices as soon as they are released.
Technophiles are more likely to embrace automation and artificial intelligence technologies in various domains, such as using voice assistants, self-driving cars, or home automation systems.
Technophiles tend to have an optimistic view of emerging technologies like virtual reality, augmented reality, blockchain, or autonomous robots, recognizing their potential benefits and actively exploring their applications.
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explain how the addition of a second winding to a single-phase induction motor allows them to produce a torque under starting conditions?
When a single-phase induction motor has a second winding, it allows it to produce torque under starting conditions. The addition of a second winding to a single-phase induction motor makes it possible to produce a rotating magnetic field that is approximately equal to that produced by a three-phase motor.
This rotating magnetic field is used to create torque in the rotor. The two windings on the stator have different numbers of turns and are typically wound with different wire diameters to provide the necessary phase shift. The primary winding, which is usually on the outer circumference of the stator, is wound with a thicker wire and has a larger number of turns. The secondary winding, which is typically placed inside the primary winding, is wound with a thinner wire and has fewer turns.
To create a rotating magnetic field with a single-phase supply, the secondary winding is given a phase shift relative to the primary winding. When the primary winding is energized, it creates a magnetic field that is nearly stationary. When the secondary winding is energized, it creates a magnetic field that is displaced in space and time from the primary field. The combined fields create a rotating magnetic field that rotates at a rate determined by the frequency of the supply.
The rotor of the induction motor is then attracted to this rotating magnetic field and begins to rotate. The torque produced by the motor depends on the strength of the magnetic field and the amount of slip between the rotor and the rotating field. The slip is the difference in speed between the rotating field and the rotor, and it is what allows the rotor to accelerate and produce torque.
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f (xa, ya) are the coordinates of point a, select the correct expression for the electric potential va at point a in terms of the symbols given.
The formula for the electric potential va at point an is EA=(kq)/(XA2+YB2).
With a point charge, which equation is utilized to determine the electric potential in an electric field?Test = k | Q | r 2 when E = F q. Test = k | Q | r 2 when E = F q. The size of the electric field produced by a point charge Q is determined by this equation. The distance from the point charge, Q, is represented by the number r in the denominator.
Which is the result of dividing a charged particle's electric potential energy by its charge?Potential difference, or potential energy difference divided by the charge, is referred to as voltage. ∆V = ∆U/q. Every time, a particle moves faster in the direction of the point with the lowest potential energy U.
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this is it dont anwser this is for my other account
Answer:
thanks for the poiunts
Explanation:
Define waves as it applies to electromagnetic fields
Waves in the electric and magnetic fields are known as electromagnetic waves. You must first understand what a field is, which is just a technique of giving each square inch of space a numerical value. You may see that as a temperature field, for instance, when you look at the weather predictions and they mention the temperature in several locations. Every location on Earth has a unique temperature that can be quantified. Everywhere on Earth has its own wind velocity, which is another form of field. This field differs somewhat from the temperature field in that the wind velocity has both a direction and a magnitude, whereas the temperature just has a magnitude (how hot it is). A vector is a quantity that has both magnitude and direction, hence a field that contains vectors at every location is referred to as a vector field. Vector fields include the magnetic and electric fields. We may examine what would happen if we placed a charged particle at any given position in space. If the charged particle were to accelerate, we would state that the electric field there is the direction in which the particle is moving. In general, positively charged particles will move in the electric field's direction, whereas negatively charged particles will move in the opposite way. Because it is a vector field, the magnetic field exhibits comparable behavior. We discovered in the 19th century that the same interaction, electromagnetism, really produces both electric and magnetic fields. Like an electromagnet, a changing electric field will produce a magnetic field, and a changing magnetic field will induce an electric field (like in a generator). If your system is configured properly, you may have an electric field that fluctuates, which in turn produces a magnetic field, which in turn induces another electric field, which in turn generates another magnetic field, and so on indefinitely. At the speed of light, this oscillation between a strong magnetic field and strong electric field spreads out indefinitely. In reality, light is an electromagnetic wave—an oscillation in the electromagnetic fields. An electric or magnetic field may exist without a medium since they exist in a vacuum, which implies that waves in these fields don't require a medium like sound to flow through.
A(n) ________cap is a reinforced rubber cap installed on the outside of an opening and secured in position with a stainless steel hose clamp.
A(n) end cap is a reinforced rubber cap installed on the outside of an opening and secured in position with a stainless steel hose clamp.
This type of cap is commonly used in various applications to seal off or protect the end of a pipe or tubing. The reinforced rubber material provides durability and resistance to wear, while the stainless steel hose clamp ensures a tight and secure fit.
The end cap serves multiple purposes, such as preventing the escape of fluids or gases, protecting the exposed end from external contaminants, and minimizing the risk of leaks or damage. It is often used in plumbing systems, automotive and machinery components, and other industrial applications.
The installation process is relatively simple, requiring the end cap to be placed over the opening and tightened using the stainless steel hose clamp. This provides a secure seal that withstands pressure, temperature, and environmental conditions.
In summary, an end cap is a reinforced rubber cap used to seal off or protect the end of an opening, secured in place with a stainless steel hose clamp for a reliable and durable solution.
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Effective operation of roller chain and gear couplings
requires proper
A. lubrication and cooling.
B. lubrication and balance.
C. alignment and balance.
D. alignment and lubrication.
Effective operation of roller chain and gear couplings requires proper alignment and lubrication.
Roller chain coupling are compact and flexible couplings. They are used for low to moderate speed/torque applications. For effective operation they need to be maintained by applying lubrication and aligning.
Gear couplings are used for high speed and torque applications. For effective performance they need to be lubricated frequently and proper alignment is needed.
Hence effective operation of roller chain and gear couplings requires proper lubrication and alignment.
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A hypothetical metal has an orthorhombic unit cell for which the a, b, and c lattice parameters are 0. 413 nm, 0. 665 nm, and 0. 876 nm, respectively. (a) If there are 8 atoms per unit cell and the atomic packing factor is 0. 536, determine the atomic radius (in nm). (b) If the density is 3. 99 g/cm3, calculate the metal's atomic weight (in g/mol)
The calculated value is 9.5 g/cm³. For the density calculation, we need to know the mass and the volume of the unit cell.
When = = = 90 and a = b = c, we have a cubic lattice; however, if c is greater than a and b (a= b), we have a tetragonal lattice. This lattice is identical to the simplest one, the cubic lattice, which can be simple or primitive cubic or body centered. Likewise, the tetragonal lattice can be primitive or body centered. When they inform us that there are atoms at all four corners and one in the center of the unit cell, we know it's a body-centered lattice.
= 123 g / mol x 1 mol / 6.022 x 10²³ x 2 atoms/unit cell
= 4.1 g x 10⁻²² g/unit cell
Finally, the density is calculated.
d = m/V
= 4.1 x 10⁻²² g /4.3 x 10⁻²³ cm³
= 9.5 g/cm³
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charging method .Constant current method
Answer:
There are three common methods of charging a battery; constant voltage, constant current and a combination of constant voltage/constant current with or without a smart charging circuit.
Constant voltage allows the full current of the charger to flow into the battery until the power supply reaches its pre-set voltage. The current will then taper down to a minimum value once that voltage level is reached. The battery can be left connected to the charger until ready for use and will remain at that “float voltage”, trickle charging to compensate for normal battery self-discharge.
Constant current is a simple form of charging batteries, with the current level set at approximately 10% of the maximum battery rating. Charge times are relatively long with the disadvantage that the battery may overheat if it is over-charged, leading to premature battery replacement. This method is suitable for Ni-MH type of batteries. The battery must be disconnected, or a timer function used once charged.
Constant voltage / constant current (CVCC) is a combination of the above two methods. The charger limits the amount of current to a pre-set level until the battery reaches a pre-set voltage level. The current then reduces as the battery becomes fully charged. The lead acid battery uses the constant current constant voltage (CC/CV) charge method. A regulated current raises the terminal voltage until the upper charge voltage limit is reached, at which point the current drops due to saturation.
An engineer wants to design a knee replacement.Identify one criterion the design should meet.
(A) Find the bilateral Laplace transform of the signal 21(t) = 8(t+1) + u(4t – 1). (6 marks) (B) Consider a causal system described by the following differential equation as dy(t) +6 dy(t) + 13y(t) ) = do(t) dt dt (a) Find the transfer function of the system. (b) Find the output of the system in the time domain due to the input x2(t) = te-3tu(t) if the system is initially at rest. dt?
Laplace transform of 8(t+1)8(t) = 0 for t<0,8(t) = 8 for t≥08(t+1) = 0 for t<1,8(t+1) = 8e-s for t≥1 (where s = Laplace variable)u(4t - 1) = 0 for t < 1/4,u(4t - 1) = 1 for t ≥ 1/4Therefore,21(t) = 8(t+1) + u(4t – 1)=8e-su(s) + 8u(s) + u(s)[Hint: u(t-a) = e-as u(t)]
Taking Laplace transform on both sides, we get:L{21(t)} = 8e-su(s) + 8u(s) + u(s)L{21(t)} = (8e-s + 9)u(s)B) Given differential equation isdy(t)/dt + 6 dy(t)/dt + 13 y(t) = do(t)/dtBy taking Laplace transform of both sides, we getY(s) (s + 6) + 13 Y(s) = sTherefore,Y(s) = s/(s2 + 6s + 13) = s/[(s + 3)2 + 4]
This is in the standard form of Laplace transform of a second-order linear system.Hence, the transfer function is given byH(s) = Y(s) / X(s) = s/[(s + 3)2 + 4]Now, taking inverse Laplace transform of H(s), we geth(t) = L-1{H(s)} = L-1{s/[(s + 3)2 + 4]}h(t) = e-3t (sin 2t + 3cos 2t)Let, X2(s) = L{x2(t)} = L{t e-3tu(t)}Therefore, X2(s) = (1 / (s + 3)2), n = 1By the multiplication property of Laplace transformY(s) = X2(s)H(s)Y(s) = s / [(s + 3)2 (s + 3)2 + 4]By taking the inverse Laplace transform of Y(s), we gety(t) = L-1{Y(s)} = L-1 {s / [(s + 3)2 (s + 3)2 + 4]}
Now, use partial fraction to solve this integral. Using the partial fraction, we can solve the inverse Laplace of Y(s) which is y(t) and will be equal to the output of the system in time domain.
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Please help me in this assignment.
Why should a firm such as Dell take into account total supply chain profitability when making decisions?
A helical compression spring is wound using 0. 4-in diameter music wire. The spring has an outside diameter of 4. 7-in with squared and ground ends, and 9. 0 total coils. The spring has a free length of 11. 5-in. For this problem, you have to calculate the following, and write it down in your procedure:
The spring scale/rate (k)
The solid length (Ls)
The yield load (Fy)
The maximum shear stress generated once the solid length is reached (τmax)
The values for the shear modulus of the material (G) and the spring scale/rate (k), we can't accurately calculate the spring scale/rate (k), yield load (Fy), and maximum shear stress (τmax).
To calculate the spring scale/rate (k), solid length (Ls), yield load (Fy), and maximum shear stress (τmax), you'll need to use the following formulas: Spring scale/rate (k):The spring scale/rate represents the amount of force required to compress or extend the spring by a certain distance. It is calculated using the formula:k = (Gd^4) / (8D^3n)
Where: G is the shear modulus of the material, d is the wire diameter, D is the mean coil diameter (outside diameter minus wire diameter), n is the total number of coils
Solid length (Ls):The solid length of the spring is the length of the spring when it is completely compressed. It can be calculated using the formula:Ls = (n - 1) * d,Where: n is the total number of coils, d is the wire diameter,Calculate the yield load (Fy),Fy = k * (Ls - Lo),Since we don't have the spring scale/rate (k), we can't calculate the yield load accurately without this information. Calculate the maximum shear stress (τmax),τmax = (16Fy) / (πd^3) Since we don't have the yield load (Fy), we can't calculate the maximum shear stress accurately without this information.
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which method of foam application involves applying a foam stream onto an object and allowing the foam to run down the object onto the surface of the fuel?
Applying foam is yet another component of the overall foam strategy that, if not completed... The nozzle team can then use the Bank-down Method.
What is Bank-down Method ?
Applying foam is another component of the overall foam strategy that, if not done properly, can result in injury and property loss. So far, we've discussed creating a foam setup with the proper nozzles, appliances, and hoselays.
We've talked about the different types of concentrate and the appropriate application rates, as well as expansion ratios and foam drain time. Let's move on to actually applying the finished foam to the spill or fire.
We've said it before in this series, but it's so important that we'll say it again. As with any potential for fire, we should always supply the bare minimum of finished foam.
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You insert a dielectric into an air-filled capacitor. How does this affect the energy stored in the capacitor?.
Answer:
Energy stored in the capacitor will increase first, and then it will decrease.
Explanation:
Name the manufacturing process that the worker is using to create the workpiece. The manufacturing process carried out by the blacksmith in the image is the process of
Answer:
Metamorphic manufacturing
Explanation:
I don't know what form of an answer you wanted but I hope this helps :)
explain why martensite is so hard. (b) explain why un-tempered martensite can be so brittle.
Martensite is a hard and strong form of steel that results from rapid cooling. The cooling process causes the carbon atoms to become trapped in the iron lattice structure, resulting in a very hard and strong material.
Martensite is hard because the carbon atoms create a very rigid lattice structure, which makes it difficult for the material to deform under stress. However, un-tempered martensite can be very brittle. This is because the rapid cooling process also causes the material to have high internal stresses. These internal stresses can cause the material to fracture or break easily, especially under impact or sudden loads. Therefore, it is important to temper martensite to reduce its brittleness and increase its toughness. Tempering involves reheating the martensite to a specific temperature and then cooling it slowly, which reduces the internal stresses and improves its ductility.
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A student used a 500-ml graduated cylinder to measure the volume of water in a 1-cup measure. three trials of the measurement gave volumes of 240 ml, 242 ml, and 235 ml. What is the average of the three measurements?
Answer:
239 mL
Explanation:
The average of any set of data is the sum of the values, divided by their number.
v = (240 +242 +235)/3 = 717/3 = 239 . . . mL
The average of the three measurements is 239 mL.
The ______ operator always follows the cin object, and the ______ operator follows the cout object. A) binary, unary. B) conditional, binary. C) >>, << D) <<, >>
The response is (C) >>,. The output operator (>) always comes after the cout object, while the input operator (>) always comes after the cin object.
What is the purpose of CIN in C++?The iostream header file in the C++ language declares the object of class istream named cin. With the use of the extraction operator (>>) or member functions like getline(), read(), etc. together with the cin object, we may read data from a common input device like a keyboard.
What in C++ is cout?In C++, output is shown on the screen using the cout function. The letters "c" and "out" in "cout" stand for character and output, respectively. cout hence denotes character output. Using the insertion operator along with cout to output formatted data.
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Shops should avoid purchasing any material sold in ____________.
Answer: Aerosol Cans
Explanation: I just did the quiz
what is the maximum each pallet can weigh in a 22 pallet load?
If you have a 22-pallet load, and assuming each pallet is the same weight, the maximum weight each pallet can weigh would be around 2,000 pounds
To find out the maximum each pallet can weigh in a 22-pallet load, you need to know the total weight limit for the load. The answer will depend on what type of truck or transportation vehicle you are using to transport the pallets, as each has different weight limits.
To illustrate, for a standard 53-foot trailer, the maximum weight allowed is typically around 44,000 pounds.
44,000 pounds / 22 pallets = 2000.
However, if you know the specific weight limit for the truck or transportation vehicle you are using, you can calculate the maximum weight for each pallet accordingly.
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If a 22 pallet load is to be carried, then the maximum each pallet can weigh in the load will depend on the capacity of the truck, the weight limit per axle, and the total weight of the load.
The weight limit varies for different types of trucks, and other factors like the size and weight of the cargo, the type of load, and the distance to be traveled affect the weight distribution. Therefore, the maximum weight limit that each pallet can carry in a 22 pallet load is 11,250 pounds assuming an even distribution, a maximum weight capacity of 80,000 pounds.A truck can carry a maximum of 22 pallets of different weight capacities, the truck's total weight limit will be reached before 22 pallets are loaded. However, if the load is light and does not occupy much space, more pallets can be loaded. Therefore, it is essential to understand the maximum weight limit that each pallet can carry to prevent exceeding the truck's weight limit, which can cause accidents and damage to the goods.
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you are constructing an earthen embankment for flood control. you need 16,300 m of material to build the embankment, the composition of which needs to be: 4890 m sand 5868 m fine gravel 5542 m course gravel you have access to 3 different quarries each of which provides material in the following compositions: % sand % fine gravel % course gravel quarry 1 52 30 18 quarry 2 20 50 30 quarry 3 25 20 55 how much material should you get from each quarry to have the correct quantity and composition for your embankment? setup and solve the problem using the matrix equation ap
In order to construct an earthen embankment for flood control, a specific quantity and composition of material is needed. The problem at hand is to determine how much material should be obtained from three different quarries to meet the required composition.
The required composition of the material for the earthen embankment is 4890 m of sand, 5868 m of fine gravel, and 5542 m of course gravel, for a total of 16,300 m. There are three different quarries available, each with a different composition of sand, fine gravel, and course gravel.
To solve this problem, we can use a matrix equation in the form of Ap = B, where A is the matrix of the compositions of the quarries, p is the vector of the quantities of material obtained from each quarry, and B is the vector of the required amounts of each type of material for the embankment.
Using the information provided, we can construct the A matrix as follows:
A = | 0.52 0.30 0.18 |
| 0.20 0.50 0.30 |
| 0.25 0.20 0.55 |
And the B vector as follows:
B = | 4890 |
| 5868 |
| 5542 |
We want to solve for the vector p, which will tell us how much material to obtain from each quarry. Therefore, we can rearrange the equation to solve for p, as follows:
p = A^-1B
Using a calculator or matrix software, we can calculate the inverse of A, which is:
A^-1 = | 0.5215 -0.3720 -0.0579 |
|-0.2173 0.7103 -0.2181 |
|-0.0737 -0.1905 0.2628 |
Multiplying A^-1 by B, we get:
p = | 2236.4 |
| 3716.5 |
| 6346.1 |
Therefore, we should obtain 2236.4 m of material from quarry 1, 3716.5 m of material from quarry 2, and 6346.1 m of material from quarry 3 to meet the required composition for the earthen embankment.
By using a matrix equation and solving for the vector of quantities from each quarry, we were able to determine how much material to obtain from each quarry to meet the required composition for the earthen embankment.
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What is the maximum number of outgoing flows a merge can have?A. OneB. TwoC. NoneD. Unlimited
It is correct to state that within the context of computer science, th e maximum number of outgoing flows a merge can have is Two (Option B)
What are outgoing flows in Computer Science?Outgoing flows in computer science refer to the flow of data or control from a specific node in a system or process to other nodes or systems.
It refers to the movement of data or control signals out of a specific component or module and towards other components or modules within the same system or to other systems. Outgoing flows are a fundamental aspect of many computer systems and processes and are used to control and coordinate the actions of different components and systems.
They help to ensure that data and control signals are transmitted between different components of a system in an efficient and controlled manner.
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choose the best option in the drop-down menus to correctly complete the statement below. [ select ] is used as a separation technique in which a [ select ] mixture is vaporized and then condensed into [ select ] flag question: question 6
It is possible to separate miscible solvents from one another through a procedure known as distillation.
What are physical methods of separation?Using physical separation techniques, two different states of matter can be separated from one another. This is done by comparing the physical characteristics of the two states of matter.typically combinations of solid and liquid.Decanting is the process of carefully pouring out the liquid portion of a mixture of liquid and solids while leaving the solid behind.Distillation is the process used to separate miscible solvents from one another.To learn more about separation technique refer to:
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All of these are designed to absorb collision energy EXCEPT: dimples. O slots. O crush zones. Oreinforcements.
The term that is not designed to absorb collision energy is dimples.
What is an energy-absorbing mechanism?
Energy-absorbing mechanism is a safety mechanism that absorbs the kinetic energy that is generated during an impact.
The shock-absorbing material, which is intended to be compressed in a controlled manner under the impact, is the most basic component of this system.
What is the purpose of the design of a crush zone?
Crush zones are engineered areas of a vehicle that are designed to absorb and dissipate energy during a collision.
They are often constructed from a variety of materials, including high-strength steel, aluminum, magnesium, and other composites.
O Slots, crush zones, and reinforcements are all safety features that are designed to absorb collision energy and lessen the impact of a collision on the vehicle and its occupants.
These energy-absorbing mechanisms allow the vehicle to deform or collapse in a controlled manner, slowing down the rate of deceleration and reducing the amount of force transferred to the vehicle's occupants.
Dimples, on the other hand, are not an energy-absorbing mechanism.
Dimples are tiny indentations or bumps on the surface of a material that is often used to reduce aerodynamic drag. They are not designed to absorb collision energy.
Therefore, the answer is dimples.
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We are capable of building computers that exhibit human-level intelligence. Are there certain areas of application where we should push to accelerate the building of such computers? Why these application areas? Are there certain areas of application we should avoid? Why these application areas?
The idea of creating computers with human-level intelligence has been a topic of discussion for a long time.
While it's an exciting prospect, it's also important to consider the areas where we should push to accelerate the building of such computers.
One area where we should focus on accelerating the building of such computers is the medical field. With the help of these computers, doctors can diagnose diseases more accurately and efficiently, and even predict future health issues. Additionally, these computers can analyze medical data faster, which could lead to the development of new drugs and treatments.
Another area where we can push for the development of human-level intelligent computers is the field of engineering. These computers can simulate complex structures and designs, leading to the creation of better and more efficient machines.
However, there are also certain areas where we should avoid building such computers. For example, creating autonomous weapons or robots with human-level intelligence can have disastrous consequences. Such weapons or robots could make decisions that could harm humans, which is not something we should take lightly.
In conclusion, while the development of computers with human-level intelligence is an exciting prospect, it's important to focus on the areas where they can be used to improve human lives. At the same time, we must be cautious about the potential risks associated with their development in certain areas.
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Write a procedure that produces N values in the Fibonacci number series and stores them in an array of doubleword then display the array to present Fibonacci numbers in hexadecimal (calling the DumpMem method from the Irvine32 library). Input parameters should be a pointer to an array of doubleword, a counter of the number of values to generate. Write a test program that calls your procedure, passing N = 30. The first value in the array will be 1, and the last value will be 832040 (000CB228 h)
The Fibonacci series is a sequence of numbers that starts with 0 and 1, and each subsequent number is the sum of the previous two numbers. In this question, we are supposed to write a procedure that produces N values in the Fibonacci number series.
Stores them in an array of doubleword and then display the array to present Fibonacci numbers in hexadecimal (calling the Dump Mem method from the Irvine32 library).The above code declares an array named arr of 30 doublewords.
It then calls the Fibonacci procedure and passes the address of the array and the length of the array as parameters. Finally, it displays the array in hexadecimal using the DumpMem method from the Irvine32 library.
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Please help me it’s for science I only have a few minutes
Answer:
Rocks
Explanation:
I am not sure tho bc they are made out of coal and I think coal is a kind of rock
Answer:
I'm taking a guess for ya I shall say Metal or and Minerals
Explanation:
Good luck
A metal shear can be used to cut flat stock , round stock , channel iron and which of the following?
Answer:
Angle Iron
Explanation:
Mark brainliest please.