To calculate the necessary MIPS (Millions of Instructions Per Second) required for the embedded system, we need to consider the ADC sampling speed and the number of instructions required for reading, converting, and displaying the temperature.
Given:
ADC sampling speed: 25 kHz
Number of instructions: 20 instructions with each taking two clock cycles
First, we need to calculate the number of instructions executed per second. Since each instruction takes two clock cycles, we can consider the number of clock cycles per second as the double of the ADC sampling speed.
Clock cycles per second = ADC sampling speed * 2
= 25 kHz * 2
= 50 kHz
Next, we need to calculate the number of instructions executed per second by multiplying the clock cycles per second by the number of instructions.
Instructions per second = Clock cycles per second * Number of instructions
= 50 kHz * 20
= 1,000,000 instructions per second
Finally, we divide the instructions per second by one million to get the MIPS value.
MIPS = Instructions per second / 1,000,000
= 1,000,000 / 1,000,000
= 1 MIPS
Therefore, the necessary MIPS to select a processor for the embedded system is 1 MIPS.
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in what way was the moog synthesizer considered an instrument more than just a machine?
The Moog synthesizer was considered an instrument more than just a machine because it allowed musicians to create and manipulate sounds in a way that was previously impossible.
The Moog was one of the first synthesizers to be widely available and it offered a level of control over sound that was previously only possible through a complex array of instruments and techniques. The ability to create new and unique sounds quickly and easily allowed musicians to explore new genres and push the boundaries of music.
Furthermore, the Moog allowed for expressive playing, with features like the keyboard and the ability to add vibrato and other effects to the sound. The Moog also had a unique sound quality that became associated with electronic music, making it an essential tool for musicians in this genre.
Overall, the Moog synthesizer was much more than just a machine – it was an instrument that allowed musicians to express themselves in new and innovative ways, and its impact on music cannot be overstated.
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Is modern water treatment still modern? Comment on this issue by: (a) describing the main components of the typical municipal water treatment process from source water to tap, and (b) noting several strengths and weaknesses/limitations of modern water treatment.
Modern water treatment is still considered modern as water treatment processes are constantly evolving and improving to provide better quality water.
Municipal water treatment processes go through multiple stages to ensure safe drinking water. The treatment process typically involves the following components: Coagulation and flocculation: In this stage, chemicals such as alum are added to the water. This causes impurities to clump together and form larger particles, which are then removed through filtration.
Sedimentation: The water is allowed to sit undisturbed to allow the larger particles to settle at the bottom of the tank. Filtration: Water is passed through various filters that remove any remaining impurities, including bacteria, viruses, and chemicals. Disinfection: Chlorine or other disinfectants are added to the water to kill any remaining bacteria or viruses before it is sent to the distribution system.
The potential for disinfectant byproducts to form when disinfectants react with natural organic matter4. The potential for microplastics to enter water sources due to inadequate filtration. It is important to continue to improve and adapt modern water treatment processes to ensure the provision of clean, safe drinking water to communities around the world.
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The UHRS platform is optimized for Edge/Internet Explorer only. You can still use your favorite browser, but keep in mind that you may experience technical issues when working on UHRS with a different browser than Edge or Internet Explorer.
UHRS is optimized for...
It is to be noted that all UHRS platforms are optimized for the popular kinds of internet browser applications.
What is a UHRS?The Universal Human Relevance System (UHRS) is a crowdsourcing platform that allows for data labeling for a variety of AI application situations.
Vendor partners link people referred to as "judges" to offer data labeling at scale for us. All UHRS judges are bound by an NDA, ensuring that data is kept protected.
A browser is a software tool that allows you to see and interact with all of the knowledgeon the World Wide Web. Web sites, movies, and photos are all examples of this.
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What statement about the print() function is true?
print() has a variable number of parameters.
print() can have only one parameter.
print() can be used to obtain values from the keyboard.
print() does not automatically add a line break to the display.
Explanation:
print() has a variable number of parameters. this is the answer.
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if the leak does not immediately ignite it may result in a delayed igntion of a gas clous
If the leak does not immediately ignite, it may result in a delayed ignition of a gas cloud. Delayed ignition of a gas cloud is when a flammable gas mixture is released into the air, but it does not immediately ignite. Rather, it forms a cloud of flammable vapor. If an ignition source comes in contact with this cloud, it will ignite, causing a powerful explosion that can cause significant damage and harm.
In this situation, if a flammable gas is released into the air, and it does not immediately ignite, the gas will form a cloud of flammable vapor, which can remain dangerous for a significant period. If an ignition source, such as a spark or an open flame, comes into contact with this cloud, it can ignite it, causing an explosion.
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When would working with machinery be a common type of caught-in and caught-between
hazard?
Answer:
A working with machinery be a common type of caught-in and caught-between hazard is described below in complete detail.
Explanation:
“Caught in-between” accidents kill mechanics in a variety of techniques. These incorporate cave-ins and other hazards of tunneling activity; body parts extracted into unconscious machinery; reaching within the swing range of cranes and other installation material; caught between machine & fixed objects.
Answer:
When working with heavy pieces.
Explanation:
Under conditions for which the same room temperature is maintained by a heating or cooling system, it is not uncommon for a person to feel chilled in the winter but comfortable in the summer. Provide a plausible explanation for this situation (with supporting calculations) by considering a room whose air temperature is maintained at 20 ℃ throughout the year, while the walls of the room are nominally at 27 ℃ and 14 ℃ in the summer and winter, respectively. The exposed surface of a person in the room may be assumed to be at a temperature of 32 ℃ throughout the year and to have an emissivity of 0.90. The coefficient associated with heat transfer by natural convection between the person and the room air is approximately 2 W/m2∙K.
Answer:
radiative heat loss substantially increases as the wall temperature declines
Explanation:
The body's heat loss due to convection is ...
(2 W/m^2·K)((32 -20)K) = 24 W/m^2
__
The body's heat loss due to radiation in the summer is ...
\(\epsilon\sigma(T_b^4-T_w^4)\quad\text{where $T_b$ and $T_w$ are body and wall temperatures ($^\circ$K)}\\\\0.90\cdot 5.6703\cdot 10^{-8}(305.15^4-300.15^4)\,\text{W/m$^2$}\\\\\approx 28.3\,\text{W/m$^2$}\)
The corresponding heat loss in the winter is ...
\(0.90\cdot 5.6703\cdot 10^{-8}(305.15^4-287.15^4)\,\text{W/m$^2$}\\\\\approx 95.5\,\text{W/m$^2$}\)
Then the total of body heat losses to surroundings from convection and radiation are ...
summer: 24 +28.3 = 52.3 . . . W/m^2
winter: 24 +95.5 = 119.5 . . . W/m^2
__
It is reasonable that a person would feel chilled in the winter due to the additional radiative loss to the walls in the winter time. Total heat loss is more than doubled as the wall temperature declines.
Which of these is known as the greatest danger associated with excavations?
Select the best option.
Asphyxiation
Cave-ins
Fire
Underground utility lines
Answer:
Cave-ins
Explanation:
The term excavation means any form of cuts, depression or trench by removing the surface of the earth. This process is intended primarily for the purpose of construction and maintenance or exploration. In this process there are many hurdles that pose danger to both human life and earth. The excavation workers face the great threat because of cave-ins. The collapsing of the earth's surface and random accidents prove to be very dangerous for the workers.
Which vegetation type do you think will cause fire to spread the fastest?
Explain why you chose that answer.
Answer:B
Explanation: Dead Grass more flammable than wood and Green grass contains water.
Draw the free-body diagram of the beam which supports the 80-kg load and is supported by the
pin at A and a cable which wraps around the pulley at D.
The free-body diagram of the beam which supports the 80-kg load and is supported by the pin at A can be seen in the image attached below.
The first image shows the diagram of the beam and the second image shows the free-body diagram of the beam.
The resolution of forces in the system is well understood by the principle of equilibrium where a stationary body will remain balanced when subject to parallel forces provided that the total sum of the overall external forces is zero.
The free-body diagram is a graphical representation used to visualize the forces applied to an object.
The equilibrium of forces on the x-axis is:
\(\mathbf{\sum F_x = 0}\)
The equilibrium of forces on the y-axis is:
\(\mathbf{\sum F_y = 0}\)
The equilibrium condition at any point is:
\(\mathbf{\sum M = 0}\)
From the free body diagram attached in the second image below,
the horizontal reaction is located at point A as \(\mathbf{ A_x}\) the vertical reaction is located at point A as \(\mathbf{A_y}\) the tension = Tthe weight = WTherefore, we can conclude that the free-body diagram of the beam which supports the 80-kg load and is supported by the pin at A can be seen in the image attached below.
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If a 2 1/8 inch diameter medium carbon steel rod is to be turned between centers to a 2 inch diameter using high speed cutting bits without using a coolant, find the following:
Picture linked
Answer:
I think 1 31/32
1 Define the following technical terms: A) Sewage Factor B) Connection Factor C) Infiltration Coe. D) Design Period E) Drop Manhole F) Self Cleansing velocity 2 Which factors do affect on water demand
A) Sewage Factor: It represents the proportion of water inflow that is expected to be discharged as sewage. It is used in the design of sewer systems to estimate the quantity of sewage flow that will be generated.
B) Connection Factor: It represents the percentage of buildings or properties that are expected to connect to a sewer system. It is used in the design of sewer systems to estimate the total number of connections that will be made to the system.
C) Infiltration Coefficient: It represents the rate at which water enters a sewer system through cracks, joints, and other defects in pipes. It is used in the design of sewer systems to estimate the volume of infiltration that will occur during wet weather conditions.
D) Design Period: It is the length of time for which a particular engineering project is designed to function effectively. For example, in the case of water supply systems, the design period may be 20-30 years, during which the system is expected to meet the water demand requirements of the users.
E) Drop Manhole: It is a type of manhole that is constructed at a location where the sewer pipe changes direction from a horizontal to a vertical alignment. The purpose of a drop manhole is to reduce the velocity of the sewage flow and prevent damage to the downstream sewer structures.
F) Self Cleansing Velocity: It is the minimum velocity required in a sewer pipe to prevent the deposition of solids and ensure the self-cleansing of the pipe. A value of twice the average velocity is commonly used as the self-cleansing velocity.
The factors that affect water demand include population size, economic activity, climate, lifestyle, and water pricing policies. Changes in any of these factors can influence the level of water demand in a given area. For example, an increase in population size or economic activity can lead to a higher demand for water, while the implementation of water conservation measures can reduce water demand.
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The complete stress distribution obtained by superposing the stresses produced by an axial force and a bending moment is correctly represented by _______.
The complete stress distribution obtained by superposing the stresses produced by an axial force and a bending moment is correctly represented by F/A - (My)/(Iz).
What is the distribution of pressure at some stage in bending?Compressive and tensile forces expand withinside the path of the beam axis beneath neath bending loads. These forces set off stresses at the beam. The most compressive pressure is observed on the uppermost fringe of the beam whilst the most tensile pressure is positioned on the decrease fringe of the beam.
The bending pressure is computed for the rail through the equation Sb = Mc/I, wherein Sb is the bending pressure in kilos in keeping with rectangular inch, M is the most bending second in pound-inches, I is the instant of inertia of the rail in (inches)4, and c is the space in inches from the bottom of rail to its impartial axis.
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Indiana Jones needs to ascend a 10 m high building. There is a large hose filter with pressurized water hanging down from the building top. He builds a square platform and mounts for 4 cm diameter nozzles pointing down at each corner. By connecting hose branches, a water jet with 15m/s velocity can be produced from each nozzle. Jones the platform and the nozzles have a combined mass of 150 kg.
Velocity needed to the system is 14 m / s
What is velocity?The displacement that an object or particle experiences with respect to time is expressed vectorially as velocity. The meter per second (m/s) is the accepted unit of velocity magnitude (also known as speed).
Let's use energy conservation as our starting point for this practice. On the ground right as you accelerate out Em0 = K = 12 m v2. No speed when on the building's roof.
Em f = U = m g h: conservation of energy
Em0 = Em f 12 m v2 = m g h v = u u = sqrt2 g h sqrt2 = 9.8 sqrt2 = 10
u = 14 m / s
Various Velocity Types are:
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The town of Camp Verde has been directed to upgrade its primary WWTP to a secondary plant that can meet an effluent standard of 25.0 mg/L BOD5 and 30 mg/L suspended solids. They have selected a completely mixed activated sludge system for the upgrade. The existing primary treatment plant has a flow rate of 2,506 m3/d. The effluent from the primary tank has a BOD5 of 240 mg/L. Using the following assumptions, estimate the required volume of the aeration tank:
BOD5 of the effluent suspended solids is 70% of the allowable suspended solids concentration.
Growth constant values are estimated to be: Ks = 100 mg/L BOD5; kd = 0.025 d–1; μm = 10 d–1; Y = 0.8 mg VSS/mg BOD5 removed.
The design MLVSS is 3,000 mg/L.
For efficient treatment, the dissolved oxygen concentration in the aeration tank must be kept between 1-3 mg/L. The microbial biomass will die at low DO levels, and it will take time and money to rebuild it.
The depth, which normally ranges from 3 to 4.5 meters, determines how effectively air is aerated. The breadth, which is typically maintained between 5 and 10 meters, regulates the mixing. The ideal width-to-depth ratio is 1.2 to 2.2. The distance shouldn't be shorter than 30 meters or longer than 100 meters. Bacteria used in wastewater treatment and stabilization are given oxygen by aeration. The bacteria require oxygen for biodegradation to take place.
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In the flow of one cycle of single phase alternating current past any given point in a circuit, how many times will the current peak to a maximum
In a flow of one cycle of single-phase alternating current past any given point in a circuit, the current will peak at its maximum once.
The current will start at zero and gradually increase to a maximum value (the current peak), then decrease back to zero, and finally reverse direction to flow in the opposite direction to complete the cycle. So, there will be only one current peak in one cycle of single-phase alternating current.
What is single-phase alternating current?
Single-phase alternating current (AC) is a type of electrical power that is commonly used in residential and small commercial applications. It is characterized by a sinusoidal waveform that alternates in polarity, meaning it changes direction periodically.
In a single-phase AC system, there is only one alternating voltage waveform, which is typically supplied by the power grid. This voltage waveform is used to power electrical devices and appliances in homes and businesses.
Single-phase AC power is commonly used for smaller electrical loads such as lighting, heating, and small motors. Larger loads and industrial applications typically require three-phase AC power, which provides more efficient and reliable power delivery.
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Please answer thank you!
A sophisticated tool for doing static analysis of trusses is called 2D Truss Analysis. It uses optimized finite elements (bar elements).
How do you solve a truss Determinacy?The 2D-Truss Analysis By using their two locations, identify the structure's node points.The two nodes (or mouse-dragging between two nodes) and material number of each truss element should be specified.the material information (cross-section and Young's modulus) Specify the loads.
If a truss can be completely estimated using only the equations of static equilibrium, it is said to be statically determinate. In order for a planar truss to be statically determinate, the sum of the members and support reactions cannot be greater than the number of joints divided by 2.It is a leader-product in truss analysis due to its adaptable interface and simple modification. attributes for analysis.
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TRUE/FALSE. Instruction: TRUE or FALSE. In the space provided, WRITE ‘TRUE’ If the statement is correct. WRITE ‘FALSE’ if the statement is wrong. If your answer is FALSE, write beside the ‘FALSE’ the correct word/s or phrase to replace the underlined word/s or phrase and to make the statement right.?
1- Distribution occurs between every pair of stages in the supply chain. Therefore, distribution includes moving of raw materials from suppliers to retailers.
2- The process of designing a distribution network that is visualized includes a decision like selling products directly to the end consumers.
3- When you want your received ordered product online to be changed by the eRetailer. This is an example of product availability.
4- When you receive an extra item as a gift from the package carrier. This is an example of product variety.
5- It is said in the relationship between response time and number of facilities that to be more responsive to customers, there is a need to limit the number of facilities.
6- In the relationship between response time and number of facilities, if customer is willing to wait longer than normal delivery days to get a book, then less number of facilities is an ideal distribution network design.
7- In the relationship between number of facilities and inventory costs, if inventory costs are increasing, this means that the number of facilities are decreasing.
8- In the relationship between number of facilities and transportation costs, there is decrease in the total transportation cost if number of facilities are increased and inbound lot sizes are very small to a point of losing economies of scale in inbound transportation.
9- In the relationship between number of facitlities and facility costs, to achieve supply chain effeciency in facility in terms of cost, there should be more number of facilities to get closer to the end customers.
10 In the variation of logistics cost and response time with number of facilities, the total logistics cost can be decreased and/or increased. The total logistics cost is increased when the response time is faster and the number of facilities are increased beyond the point of a minimized total logistics costs.
1- Distribution occurs between every pair of stages in the supply chain. Therefore, distribution includes moving of raw materials from suppliers to retailers.
2- The process of designing a distribution network that is visualized includes a decision like selling products directly to the end consumers.
3- When you want your received ordered product online to be changed by the eRetailer. This is an example of product availability.
4- When you receive an extra item as a gift from the package carrier. This is an example of product variety.
5- It is said in the relationship between response time and number of facilities that to be more responsive to customers, there is a need to limit the number of facilities.
6- In the relationship between response time and number of facilities, if customer is willing to wait longer than normal delivery days to get a book, then less number of facilities is an ideal distribution network design.
7- In the relationship between number of facilities and inventory costs, if inventory costs are increasing, this means that the number of facilities are decreasing.
8- In the relationship between number of facilities and transportation costs, there is decrease in the total transportation cost if number of facilities are increased and inbound lot sizes are very small to a point of losing economies of scale in inbound transportation.
9- In the relationship between number of facitlities and facility costs, to achieve supply chain effeciency in facility in terms of cost, there should be more number of facilities to get closer to the end customers.
10 In the variation of logistics cost and response time with number of facilities, the total logistics cost can be decreased and/or increased. The total logistics cost is increased when the response time is faster and the number of facilities are increased beyond the point of a minimized total logistics costs.
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Why is it nearly impossible to obtain satisfactory performance from a shunt motor connected to an ac power source
Answer:
Because the shunt winding consist of a large number of turns,
Explanation:
It is nearly impossible to obtain satisfactory performance from a shunt motor connected to an ac power source because the shunt winding consist of a large number of turns, due to the high number of turns that the DC shunt motor has it develops a high impedance when connected to an ac power source. and due to this high impedance the amount of current that flows through the field will be very low making it nearly impossible for the shunt motor to operate properly
3. It's
job to consider more ergonomic approaches to work
A) Everyone's
B) O Your direct supervisor's
CO The employer's
DO The employee's
Answer:
right answer is option no d
If a PPE doesn’t fit properly do you keep wearing them
Who is the best musician in Nigeria
Answer:
Wizkid
Explanation:
wizkid is the best musician in Nigeria
Explanation:
I have no clue??????????
technician a says that two diodes are required for each stator winding lead. technician b says that diodes change alternating current into direct current. which technician is correct?
Technician B is incorrect, and Technician A is also likely incorrect.
Technician A's statement about using two diodes for each stator winding lead is unclear without additional context about the specific system being discussed.
In general, a diode can be used to rectify AC voltage into DC voltage, but it is not always necessary to use two diodes. Some rectifiers use a single diode, while others use multiple diodes in a configuration called a bridge rectifier.
Technician B's statement is incorrect. Diodes can be used to rectify AC voltage, but they do not change AC into DC. Instead, they allow the positive portion of the AC voltage to pass through while blocking the negative portion, resulting in a DC voltage with a pulsating waveform.
In summary, both technicians' statements are either unclear or incorrect.
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why is carbon dating not useful for dating fossils from millions of years ago?
Carbon dating, a radiocarbon dating method, is limited to dating organic material up to 50,000 years old. Beyond that, the amount of carbon-14 remaining in the material is too small to accurately measure, rendering carbon dating useless for dating fossils from millions of years ago.
What is Carbon dating?
Carbon dating is a radiocarbon dating method used to determine the age of organic materials up to 50,000 years old. It works by measuring the amount of radioactive carbon-14 isotope in a sample, which decreases over time as it decays into nitrogen.
The age of the sample is then calculated based on the remaining amount of carbon-14.
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Process Planning Process Flowchart for Making an Acrylic Phone Stand Directions: Working in a group or partners, create a process flowchart for producing 1,000 acrylic phones stand for a business. Use the symbols provided to create the flowchart. To understand the process, you need to know these facts: The machine can only produce 20 phones stands per acrylic sheet. Your team must be done on a Friday so the phone stands must be ready for delivery the following Monday. 3. 1. 2 There must be inspections before production, during production, and after production. 4. The acrylic sheets and machine are located in different rooms. The 1000 phones stands has to be delivered to a vendor on Mondays. Your Process Planning must start with the gathering of materials and end with delivery. 7. Too short of a flowchart will be very unclear and can lead to mistakes in production.
Answer:
20a=1000
Explanation:
What is the basic requirement of measurements?
The basic requirement of measurements is to have a standard or reference point against which to compare the quantity being measured. This standard or reference point should be well-defined and stable, and the measurement process should be repeatable and consistent. Additionally, it is important to ensure that the measurement equipment is calibrated and in good working condition.
Answer:
The most basic requirement for measurements is the presence of a standard or reference point against which the quantity being measured can be compared. The measurement process should be repeatable and consistent, and the standard or reference point should be well-defined and stable. Furthermore, ensure that the measurement equipment is calibrated and in good working order.
Explanation:
What is the impact on a major stream's maximum annual discharge when flood-control dams are constructed?
The impact of constructing flood-control dams on a major stream's maximum annual discharge is significant.while the construction of flood-control dams is intended to mitigate the impact of flooding on downstream communities.
By constructing flood-control dams, the maximum annual discharge is reduced as the dams are designed to retain water during periods of heavy rainfall or snowmelt, thereby reducing the volume of water that flows downstream.
The construction of flood-control dams also impacts the natural flow of the river, which can lead to significant changes in the ecosystem. The reduced flow of water downstream can impact the temperature and nutrient levels in the water, which can have implications for the fish and other aquatic life that depend on the river for survival
Overall, while the construction of flood-control dams is intended to mitigate the impact of flooding on downstream communities, it is important to consider the broader implications of such construction on the ecosystem and hydrological cycle of the river.
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2. What is the main job of a cylinder head?
OA. Contain the rapid increase in combustion chamber temperature
OB. Contain the rapid increase in combustion chamber pressure
OC. Prevent engine oil from getting past the pistons
OD. Hold the Head Gasket in place
Grade/Exit
Answer:
Explanation:
The cylinder head sits on the engine and closes off the combustion chamber. The gap that remains between the cylinder head and the engine is completed by the head gasket. Another task of the cylinder head is to ensure the constant lubrication of the cylinder
A length of pipe is 6.8 meters long. How many 1.5-meter lengths of pipe can be cut from that one length of pipe?
6.8÷1.5 = 4.53...
So, it's 4 pipe with some left over.
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Infinite recursion can lead to an error known as stack fault memory exception syntax error logic error Question 25 1 pts Infinite recursion can occur because the base case is missing one of the necessary termination conditions the recursive case is imvoked with simpler arguments a second function is called from the recursive one the recursive function is called more than once Consider the code snippet below: int inain() Shape: shapesinUM_OBJECTS] shapes [0]â new Circle (0,0,100,150); shapes [1] new Rectangle (200,260,50,100); shapes [2] fic new ciecle (300,50,250,250); shapes [3] now Rectande (100,350,200,150) for (1nt 1 in. 1 \& Num objtCTS; 1+6 ) 1. Shapes [i]-sarau(drais_area), for (int 10;1 < NUS_oBJeCtS; i+1) detete shapes [1] In order for the loop to show different behavior when calling the function on the two different kind of objects in the array. what must be true? The drew function must be a virtual function in the base class The objects must be aggregates of each other The objects in the array should be unrelated to one another The array should contain objects, not pointers Consider the code snippet below: In order for pointers to the two different objects and to be put into the same array what must be true? The dram function must be a virtual function in the base class The objects must be aggregates of each other The objects must be related to one another via inheritance The array should contain objects, not pointers Consider the code snippet below, which uses two pre-defined classes and int main() Time* test time[SIZE]; Int rand hrs, rand mins, rand secs: Zone Type rand zone; tor ( int 1/0;(<5126;A+1) ( nand hrs h rand ( ) Ã3600; rand ains mand ( ) Ã60; rand secs m rand )Ã60; rand zone n (zonefype) ( rand() â¹8 ); if (1,Ï)2) test_time [1] - new Ext Tine(rand_hrs, rand_mins, rand secs, rand zone); ) etse (. test time(d) F new Time(rand_hes, rand mins, rand_secs); In order for the loop at the end to show different behavior when calling the function on the two different kind of objects in the array, what must be true? The function must be a virtual function in the base class. The function must be defined only in the base class. The objects in the array must be unrelated to one another. The array should contain objects, not pointers: Consider the code snippet below, which uses two pre-defined classes and int main() Time* test time[SIZE]; Int rand hrs, rand mins, rand secs: Zone Type rand zone; tor ( int 1/0;(<5126;A+1) ( nand hrs h rand ( ) Ã3600; rand ains mand ( ) Ã60; rand secs m rand )Ã60; rand zone n (zonefype) ( rand() â¹8 ); if (1,Ï)2) test_time [1] - new Ext Tine(rand_hrs, rand_mins, rand secs, rand zone); ) etse (. test time(d) F new Time(rand_hes, rand mins, rand_secs); In order for the loop at the end to show different behavior when calling the function on the two different kind of objects in the array, what must be true? The function must be a virtual function in the base class. The function must be defined only in the base class. The objects in the array must be unrelated to one another. The array should contain objects, not pointers:
Infinite recursion can lead to an error known as stack fault, memory exception, syntax error, or logic error
Infinite recursion can lead to an error known as stack fault, memory exception, syntax error, or logic error. It can occur because the base case is missing one of the necessary termination conditions, the recursive case is invoked with simpler arguments, a second function is called from the recursive one, or the recursive function is called more than once.
In order for the loop to show different behavior when calling the function on the two different kind of objects in the array in the first code snippet, the drew function must be a virtual function in the base class.
In order for pointers to the two different objects to be put into the same array in the second code snippet, the objects must be related to one another via inheritance.
In order for the loop at the end to show different behavior when calling the function on the two different kind of objects in the array in the third and fourth code snippets, the function must be a virtual function in the base class and the array should contain objects, not pointers.
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