The statement that copies data from one table and places it into a new table in SQL is the SELECT INTO statement.
The SELECT INTO statement is used to create a new table and insert data into it from an existing table. It allows for the creation of a new table with the same structure as the original table while also copying the data from the original table to the new table. The statement can be modified with various clauses, such as WHERE and ORDER BY, to further specify the data to be copied and the structure of the new table.
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Which of the following is NOT true:
a)Data marts typically have fewer data sources than data warehouses
b)Data marts typically have broader focus than data warehouses
c)Data marts are typically not as big as data warehouses
d)Data marts typically have shorter implementation time than data warehouses
The statement that is NOT true is: (b) Data marts typically have broader focus than data warehouses.
Data marts are subsets of data warehouses that are designed to serve the needs of specific departments, teams, or business functions within an organization. They typically have a narrower focus and contain a subset of data sources compared to data warehouses. Data marts are created by selecting and aggregating data from the data warehouse to provide targeted and specialized information to specific user groups.
Data warehouses, on the other hand, are comprehensive repositories that consolidate data from various sources across the entire organization. They have a broader focus as they aim to store and integrate data from multiple data sources to support enterprise-wide reporting, analysis, and decision-making.
Therefore, the statement that data marts typically have broader focus than data warehouses is not true.
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What's the Difference between CAT5e and CAT6?
The bandwidth that the cable can provide for data transfer is where the biggest distinction of CAT5e cable exists.
What distinguishes CAT 5 from CAT 6?The primary distinction between Cat5e and Cat6 cabling is in the capacity, both of which enable speeds up to megabytes Per second, which is more than enough for the majority of internet connections. Faster data transfer is made possible by higher bandwidth, and Cat6 cables handle speeds up to 250 Gaz as opposed to Cat5e's 100 MHz.
Which is preferable, Cat6 or Cat7?The frequency of a Cat7 is also higher than that of the Cat6. How frequently a signal may go via a cable is determined by its frequency. Therefore, 10,000 Mbit/s may be transported 10,000 times per second at a bandwidth of 1,000 MHz. Therefore, data may be transmitted via a Cat7 wire more quickly than a Cat6 link.
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Design a circuit that outputs a 1 when the bit pattern (101) has been applied to input, and 0 otherwise.
Answer:
see the attachment
Explanation:
The circuit shown uses Nand and Nor gates to produce the desired logic. The input bits are numbered 0 to 2, right to left.
The logic is ...
out = ((b2·b0)' + b1)'
out = b2·b1'·b0
Design a decimal arithmetic unit with two selection variables, V1, and Vo, and two BCD digits, A and B. The unit should have four arithmetic operations which depend on the values of the selection variables as shown below. V1=0011, V0=0101 and output functions are as follows;
1- A+9's complement of B
2- A+B
3- A+10's complement of B
4- A+1 (add 1 to A)
(You can see question number 3 in the attached file)
For welding the most important reason to use jigs and fixtures in a welding shop is to
Answer:
Reduce manufacturing costs.
Explanation:
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Have A Great Day
In unguided medium (free space), the electromagnetic (EM) signal wave spreads as it leaves the transmit antenna. Since the power of the EM signal resides at the surface area of the wave front, signal power is described as signal power density (i.e., watts per area).
a. True
b. False
Answer:
a. True
Explanation:
As part of a heat treatment process, cylindrical, 304 stainless steel rods of 100-mm diameter are cooled from an initial temperature of 500 C by suspending them in an oil bath at 30 C. If a convection coefficient of 500 W/m2 K is maintained by circulation of the oil, how long does it take for the centerline of a rod to reach a temperature of 50 C, at which point it is withdrawn from the bath
Answer:
Explanation:
Given that:
diameter = 100 mm
initial temperature = 500 ° C
Conventional coefficient = 500 W/m^2 K
length = 1 m
We obtain the following data from the tables A-1;
For the stainless steel of the rod \(\overline T = 548 \ K\)
\(\rho = 7900 \ kg/m^3\)
\(K = 19.0 \ W/mk \\ \\ C_p = 545 \ J/kg.K\)
\(\alpha = 4.40 \times 10^{-6} \ m^2/s \\ \\ B_i = \dfrac{h(\rho/4)}{K} \\ \\ =0.657\)
Here, we can't apply the lumped capacitance method, since Bi > 0.1
\(\theta_o = \dfrac{T_o-T_{\infty}}{T_i -T_\infty}} \\ \\ \theta_o = \dfrac{50-30}{500 -30}} \\ \\ \theta_o = 0.0426\\\)
\(0.0426 = c_1 \ exp (- E^2_1 F_o_)\\ \\ \\ 0.0426 = 1.1382 \ exp (-10.9287)^2 \ f_o \\ \\ = f_o = \dfrac{In(0.0374)}{0.863} \\ \\ f_o = 3.81\)
\(t_f = \dfrac{f_o r^2}{\alpha} \\ \\ t_f = \dfrac{3.81 \times (0.05)^2}{4.40 \times 10^{-6}} \\ \\ t_f= 2162.5 \\ \\ t_f = 36 mins\)
However, on a single rod, the energy extracted is:
\(\theta = pcv (T_i - T_{\infty} )(1 - \dfrac{2 \theta}{c} J_1 (\zeta) ) \\ \\ = 7900 \\times 546 \times 0.007854 \times (500 -300) (1 - \dfrac{2 \times 0.0426}{1.3643}) \\ \\ \theta = 1.54 \times 10^7 \ J\)
Hence, for centerline temperature at 50 °C;
The surface temperature is:
\(T(r_o,t) = T_{\infty} +(T_1 -T_{\infty}) \theta_o \ J_o(\zeta_1) \\ \\ = 30 + (500-30) \times 0.0426 \times 0.5386 \\ \\ \mathbf{T(r_o,t) = 41.69 ^0 \ C}\)
How many grains are on the surface of the head of a pin? assume that the head of a pin is spherical with a 1-mm diameter and has an astm grain size of 10
Answer:
Given, diameter of pin head d = 1 mm = 1/25.4 = 0.0394 in Surface area of a pinhead, A = 4pr^2 =
Explanation:
eesh
a fault is an example of a. brittle deformation b. ductile deformation c. elastic deformation d. all of the above
The correct answer is a. brittle deformation. therefore the correct option is (a) option.
Brittle deformation is when rocks fail as rigid solids. The rocks will break, rather than bend, under these conditions to produce fractures. Brittle deformation occurs along discrete planes in the rock instead of involving the rock body as a whole.Brittle materials include glass, ceramic, graphite, and some alloys with extremely low plasticity, in which cracks can initiate without plastic deformation and can soon evolve into brittle breakage.
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Some refrigerants contain CFCs
A) True
B) false
???????
Answer:
true ...............
Some refrigerants R11, R12, and R115 contain CFC. The statement is true.
What is chlorofluorocarbon?Chlorofluorocarbons (CFCs), as the name suggests, are compounds made of the atoms of fluorine, chlorine, and carbon. Because they are neither hazardous nor combustible, they have a variety of uses, including in refrigeration. Refrigeration is the process of maintaining the temperature of the required space cooler than that of an atmosphere.
As the public learned in 1974 that CFCs were alarmingly destroying the ozone layer, most CFCs were outlawed, and by 1995, their manufacture of them had virtually ended worldwide. CFCs were replaced with other products since they were no longer produced and the things they were used for required new products.
Therefore, some refrigerants R11, R12, and R115 contain CFC. The statement is true.
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What is the preferred development environment
Answer:The preferred development environment can vary depending on personal preferences, the type of project, and the programming language being used.
Explanation:
need urgent help!!
Determine the point(s) P on the line e with equation x−6 = ( y−3)/4 = ( 1−z)/3
for which the line connecting P with Q(2, −6, 5) is perpendicular to e.
The quartiles divide a set of observations into four portions, each representing 25% of the observations, together with the minimum and maximum values of the data set. The interquartile range, a measurement of variation around the median, is calculated using quartiles.
How are quartiles determined?In order to quartile a set of data with n items (numbers), we choose the n/4th, n/2nd, and n/4th items. Interpolation between the adjacent items is used if indexes n/4, n/2, or 3n/4 are not integers.For instance, the first quartile Q1 of ordered data is the 25th item, the second quartile Q2 is the 50th item, and the third quartile Q3 is the 75th item. The fourth quartile Q4 would be the highest item of data, and the zeroth quartile Q0 would be the minimum item; however, these extreme quartiles are referred to as the minimum and maximum of a set, respectively.Calculation:Statistical file: {2, -6, 5}
Quartile Q1: -6
Quartile Q2: 2
Quartile Q3: 5.
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Which amount of surfactant resulted in the greatest amount of airflow? which amount of surfactant resulted in the greatest amount of airflow? 2 0 4 amounts 2 and 4 gave the same airflow
Answer: AIR BALLAON.
Explanation:
The shape of the wood beam is a rectangle. In a paragraph explain the tradeoffs an engineer would make in selecting a wood with a rectangle shape versus manufactured beams with other stronger but lighter weight shapes.
Answer:
Wood is heavy
Explanation:
When the process is in control but does not meet specification which type of error is it?
When the process is in control but does not meet specification, it is referred to as a special cause error.
What is the term for a process in control but not meeting specification?In statistical process control, a process is considered to be in control when it operates within the defined limits and shows only random variations. However, when a process is in control but does not meet the desired specifications, it indicates the presence of a special cause error.
Special cause errors are attributed to specific factors or events that cause the process to deviate from the expected outcome. These errors are typically unpredictable and require investigation and corrective action to bring the process back within the desired specifications.
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How would one go about finding i1 i2 and v0
We have that the i1 ,i2 , v0 is mathematically given as
a)i1=0.667
b)i2=0.833
c)V_o=120v
From the question we are told
How would one go about finding
i1 i2 and v0CircuitGenerally the equation for the Total Resistance is mathematically given as
1/R_t=\frac{1}{150+250}+\frac{1}{100}
Rt=80
Therefore
V=IR
Therefore
V_o=1.5*80
c)V_o=120v
Hence
Using Current divider rule
\(Ix=\frac{Rt}{R_x+Rt}It\\\\Therefore\\\\i1=\frac{80}{100+80}1.5\)
a)i1=0.667
Therefore
i2=1.5-0.667
b)i2=0.833
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all else equal, an increase in the use of laptop computers for note-taking would cause a move from question 22 options: x to y. y to x. sa to sb. sb to sa.
If everything else remained the same, a rise in the usage of devices such as laptops for taking notes would result in a shift between y to x.
What is the note-taking method?Prior to summarizing, condensing, and organizing your findings so they are usable for writing tasks or reviewing for examinations, you should first take down the important ideas. You may put the concepts you've written down together by going back and reading your notes.
What method of taking notes works the best?One of the best-known and widely used note-taking strategies is the Cornell method, which was developed by Prof. Walt Pauk of Uc Berkeley there in 1950s. Instead of just mentally noting things down, it forces you to actively consider your comments as you go.
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The complete question is-
Refer to Figure 4-25. All else equal, an increase in the use of laptop computers for note-taking would cause a move from
a. x to y.
b. y to x.
c. SA to SB.
d. SB to SA.
Help this is very hard and I don't get it
Answer:
yes it is very hard you should find a reccomended doctor to aid in your situation. But in the meantime how about you give me that lil brainliest thingy :p
An aircraft is in straight, level flight has a CL of 0.42, and a 1° increase in angle of attack would increase the CL by 0.1. Following a gust that increases the angle of attack by 3° , what load factor would the aircraft be subject to?n = 1.4n = 1.7n = 0.7n = 1.0
We need to use the equation that relates the lift coefficient (CL) to the angle of attack (AOA):
CL = CL0 + k*AOA
Where CL0 is the lift coefficient at zero angle of attack, k is the lift curve slope (which tells us how much CL changes per degree of AOA), and AOA is the angle of attack.
We know that the aircraft is in straight, level flight, which means that the lift force is equal to the weight force, and the load factor is 1. Therefore, we can use the equation for lift force:
L = 0.5*rho*V^2*S*CL
Where L is the lift force, rho is the air density, V is the airspeed, S is the wing area, and CL is the lift coefficient.
Now, let's apply the gust that increases the AOA by 3 degrees. We can calculate the new CL using the given information:
CL = CL0 + k*AOA
CL = 0.42 + 0.1*3
CL = 0.72
Therefore, the new lift force is:
L = 0.5*rho*V^2*S*CL
L = 0.5*1.225*100^2*20*0.72
L = 132120 N
The load factor is the ratio of lift force to weight force:
n = L/W
n = L/(m*g)
Assuming a weight of 20 kN (which is the weight force in straight, level flight), we can calculate the load factor:
n = 132120/(20*1000*9.81)
n = 1.35
Therefore, the aircraft would be subject to a load factor of 1.35 after the gust. This is higher than the limit load factor of 1.4, which means that the pilot would need to take action to reduce the load factor (such as reducing speed or changing the aircraft's attitude) to avoid structural damage.
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The ignition module has direct control over the firing of the coil(s) of an EI system. Which component(s) triggers (controls) the module? a. Pickup coil b. Computer c. Crankshaft sensor d. All of the above
The correct answer is d. All of the above. In an electronic ignition (EI) system, the ignition module is responsible for controlling the firing of the ignition coil(s).
The ignition module receives signals from various components to determine the precise timing of the ignition spark. These components can include: a. Pickup coil: The pickup coil, also known as the magnetic or reluctor coil, is a component that generates an electrical signal based on the rotation of the engine's crankshaft or camshaft. The ignition module uses the signals from the pickup coil to determine the engine's position and control the ignition timing accordingly.
b. Computer: In many modern EI systems, the engine control unit (ECU) or computer plays a significant role in controlling the ignition module. The computer receives inputs from various sensors, such as the crankshaft sensor, camshaft sensor, or other engine parameters, and sends appropriate signals to the ignition module to control the ignition timing.
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A company that produces footballs uses a proprietary mixture of ideal gases to inflate their footballs. If the temperature of 230 grams [g] of gas mixture in a 15-liter [L] tank is maintained at 465 degrees Rankine [°R] and the tank is pressurized to 135 pound-force per square inch [psi], what is the molecular weight of the gas mixture in units of grams per mole
Answer:
The molecular weight of the gas mixture is 35.38 g/mol.
Explanation:
The molecular weight of the gas can be found using the following equation:
\( M = \frac{m}{n} \)
Where:
m: is the mass = 230 g
n: is the number of moles
First, we need to find the number of moles using Ideal Gas Law:
\( PV = nRT \)
Where:
P: is the pressure = 135 psi
V: is the volume = 15 L
R: is the gas constant = 0.082 L*atm/(K*mol)
T: is the temperature = 465 °R (K = R*5/9)
\(n = \frac{PV}{RT} = \frac{135 psi*\frac{1 atm}{14.6959 psi}*15 L}{0.082 L*atm/(K*mol)*465*(5/9) K} = 6.50 moles\)
Finally, the molecular weight of the gas is:
\( M = \frac{m}{n} = \frac{230 g}{6.50 moles} = 35.38 g/mol \)
Therefore, the molecular weight of the gas mixture is 35.38 g/mol.
I hope it helps you!
A 2.4-in diameter soap bubble is to be enlarged by blowing air into it. Taking the surface tension of solution to be 0.0027 ⁄, determine the work input (in ∙ ) required to inflate the bubble to a diameter of 2.7- in.
The work input required to inflate the bubble to a diameter of 2.7- in is 9.12 x 10⁻⁷.
What is work done?When an object is moved over a specific distance by an external force, the quantity of energy delivered to it is known as work.
Change in surface area
4π [2.7² - 2.4]
4π [7.29 -5.76]
19.22 m² = 19.22 x 0.083 = 0.132
Work done = surface tension x change into area
T x 2A
0.0027 x 2 x 0.132 lbf
0.00071 lbt. H
0.0007 x 0.00128 Bt
9.12 x 10⁻⁷
Therefore, the work input required to inflate the bubble to a diameter of 2.7- in is 9.12 x 10⁻⁷.
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What does efficiency measure?
Answer:
Efficiency is defined as any performance that uses the fewest number of inputs to produce the greatest number of outputs. Simply put, you're efficient if you get more out of less.
Explanation:
Complete the grading of fine aggregate table given below. Plot grading curve and calculate
fineness modulus. Also comment on the type of the grading curve.
Answer:
Attachment...?
Explanation:
A good place to get hints about how to answer a response question could be
a.
Your teacher
c.
Both of these
b.
The rest of the test
d.
None of these
Please select the best answer from the choices provided
A
B
C
D
Answer:
I think its A
Explanation:
Which is an example of poor sportsmanship?
A.Yelling at the referee
B.Helping a player off the field
C.Encouraging a teammate
D.Cleaning up equipment
Answer:
A
Explanation:
Answer:
the answer is a
Explanation:
poor sportsmanship is a terrible thing and will decrease team moral while great sportsmanship is help each other and staying positive on and off the field
how does the function of a generator relate to the function of a motor
The function of a generator and the function of a motor are closely related as they both involve the conversion of energy.
A generator is a device that converts mechanical energy into electrical energy. It operates by utilizing the principle of electromagnetic induction. When a generator is driven by a mechanical power source, such as an engine or turbine, it spins a rotor within a magnetic field. This rotation induces an electromotive force (EMF) in the conductors of the rotor, generating electrical energy. In other words, a generator converts mechanical energy into electrical energy.
On the other hand, a motor performs the opposite function. It converts electrical energy into mechanical energy. Motors use the phenomenon of electromagnetic induction as well, but in reverse. When a current is applied to the conductors of a motor's rotor within a magnetic field, it experiences a force that causes the rotor to rotate. This rotational motion is then used to drive the mechanical load connected to the motor. In summary, a motor converts electrical energy into mechanical energy.
In essence, generators and motors are complementary devices that operate using similar principles of electromagnetic induction. While generators produce electrical energy from mechanical energy, motors utilize electrical energy to generate mechanical motion. The ability to convert energy between electrical and mechanical forms is crucial in various applications, ranging from power generation to industrial machinery and transportation systems.
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Consider the products you use and the activities you perform on a daily basis. Describe three examples that use both SI units and customary units for measurement.
Answer: Three examples of activities that I can perform on a daily basis that involves both metric units (SI units) and customary units include: measuring the length of a door using a tape measure, which includes both SI units and customary units (like feet, inches, and centimeters); baking a cake that requires one teaspoon (customary unit) of baking soda, which could also be converted into four grams (SI unit); weighing myself on a weighing scale, which can be measured by pounds (customary unit) or kilograms (metric unit).
Explanation: I big brain :) (Not Really I Just Wanted To Help) I hope this helped! ;)
Three activities that I can do on a daily basis that involve both metric units (SI units) and customary units are: measuring the length of a door with a tape measure, which includes both SI units and customary units (like feet, inches, and centimeters); baking a cake that calls for one teaspoon (customary unit) of baking soda, which can also be converted to four grams (SI unit); and weighing myself on a weighing scale, which can be measured in pound and kilogram (metric unit).
Show that the heat rejected per stage per kg of air in a reciprocating compressor with perfect intercooling is given by ((Cp+Cv(y-n÷n-1))(T2-T1)
Total heat rejected by compressor = Heat rejected by compression + Heat rejected by intercooler
Heat rejected by compression :
Q = (y - n)/(y - 1) • W
Q = (y - n)/(y - 1) • R(T2 - T1)/(n - 1) ... (i)
Heat rejected by intercooler :
Q = Cp(T2 - T1) ... (ii)
Sum of (i) and (ii) :
Q = (i) + (ii)
Q = (y - n)/(y - 1) • R(T2 - T1)/(n - 1) + Cp(T2 - T1) ... (iii)
Remember that :
R = Cp - Cv
y = Cp/Cv
So :
R = yCv - Cv
R = Cv(y - 1) ... (iv)
Now, subtitute (iv) to (iii) :
Q = (y - n)/(y - 1) • Cv(y - 1)(T2 - T1)/(n - 1) + Cp(T2 - T1)
Q = (y - n)/(n - 1) • Cv(T2 - T1) + Cp(T2 - T1)
Q = [Cp + Cv • (y - n)/(n - 1)] • (T2 - T1)
Hope this help
How much electricity does a city with 1000 people require?
The average person needs 893 kWh per month.
So 1,000 people would need 893,000 kWh per month.