How many orders can you fill in a night assuming you are open 4 hours a night and the order size is 1 dozen cookies?

Answers

Answer 1

Assuming each order takes a constant amount of time, you can fill approximately 16 orders in a night if you are open for 4 hours and each order consists of 1 dozen cookies.

To determine the number of orders that can be filled in a night, we need to consider the time required to fill each order and the total available time. In this case, each order consists of 1 dozen cookies, which typically takes a certain amount of time to prepare and bake.

Since the order size is fixed at 1 dozen cookies, we can assume that each order takes a constant amount of time to process. Let's say it takes an average of 15 minutes to prepare and bake 1 dozen cookies.

If the shop is open for 4 hours, which is equivalent to 240 minutes, we can divide the total available time by the time required per order to find the number of orders that can be filled. In this case, 240 minutes divided by 15 minutes per order gives us approximately 16 orders.

However, it's important to note that this calculation assumes each order is processed one after the other without any idle time or delays. In a real-world scenario, factors such as oven capacity, simultaneous order handling, and other operational constraints may affect the actual number of orders that can be filled in a given time period. Therefore, this estimate of 16 orders serves as a rough approximation based on the provided information.

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Related Questions

help please!
In the show circuit, and using Kirchhoff’s
laws, calculate:
1) The electric current intensities I1, I2, and
I3.
2) The potential difference between each of
(f, c), (f, e) and (a, e)

help please!In the show circuit, and using Kirchhoffslaws, calculate:1) The electric current intensities

Answers

Therefore, the potential differences between (f, c), (f, e) and (a, e) are 4.14 V, 1.45 V, and 4.5 V, respectively.

What is potential difference?

Potential difference (also called voltage) is a measure of the electric potential energy per unit charge between two points in an electric circuit. It is usually measured in volts (V) and is denoted by the symbol "ΔV". In simpler terms, it is the difference in electric potential between two points in a circuit, and it is what causes electric charges to move from one point to another. The potential difference between two points can be measured using a voltmeter.

Here,

To solve this problem, we need to apply Kirchhoff's laws, which are the conservation of charge and the conservation of energy. Using the conservation of charge, we know that the sum of the currents entering and leaving a junction must be equal. At junction c, we have:

I1 = I2 + I3 (equation 1)

Using the conservation of energy, we know that the sum of the potential differences around any closed loop in the circuit must be zero. We can choose the loops (a, b, e, f, c, d, a) and (a, e, f, c, a) to obtain the following equations:

Loop 1: 10V - I1R1 - I2R2 - Vef - I3*R4 = 0 (equation 2)

Loop 2: 10V - Vef - I2*R5 = 0 (equation 3)

Now we have three equations (1), (2), and (3) with three unknowns (I1, I2, and I3). Solving for the currents, we get:

I1 = (10 - Vef - I2R2 - I3R4) / R1

Substituting equation 1 into equation 2 and rearranging, we get:

Vef = 10 - I1R1 - I2R2 - I3*R4

Substituting the first equation into the second equation, we get:

Vef = 10 - ((10 - Vef - I3R4) / R1)R1 - I2R2 - I3R4 - I2*R5

Simplifying and solving for Vef, we get:

Vef = (10R1 - R1I2R2 - R1I3R4 - R1I2R5 - R1I3*R4) / (R1 + R4)

Plugging in the values for the resistances and solving for I1, I2, and I3, we get:

I1 = 0.9 A

I2 = 2.07 A

I3 = 0.83 A

To calculate the potential differences between (f, c), (f, e) and (a, e), we can use Ohm's law:

Vfc = I2R2 = 4.14 V

Vfe = Vef - 5V = 1.45 V

Vae = I1R1 = 4.5 V

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Measure a coin using vernier caliper and give observation table

Answers

vernier caliper is clean and free from any debris or dirt that may affect the accuracy of the measurement.

how to measure a coin using a vernier caliper and an observation table to record the measurements. Instructions:

Ensure that the vernier caliper is clean and free from any debris or dirt that may affect the accuracy of the measurement.

Place the coin on a flat surface and inspect it for any irregularities that may affect the measurement.

Gently pick up the coin and place it in between the jaws of the vernier caliper. The jaws should be placed on opposite sides of the coin and be perpendicular to the coin's surface.

Tighten the jaws of the vernier caliper until they are snug against the coin.

Read the measurement from the scale on the vernier caliper. The scale should be read to the nearest 0.01 mm.

Record the measurement in the observation table below.

Observation table:

Measurement 1 Measurement 2 Measurement 3 A.measurement

Repeat the process at least three times to get an accurate measurement. Record each measurement in the observation table and calculate the average measurement by adding up all the measurements and dividing by the number of measurements taken.

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What helps a race car to not slide all over the race track?

Answers

Answer: Gently reduce pressure on brakes – if on ice, push in the clutch to let the wheels turn freely.

Turn the steering wheel quickly – look and steer in the direction you want to go.

Counter-steer – as the vehicle gets back on course, counter-steer to avoid skidding in the opposite direction.

Explanation:

a 2 kg block starts at rest and is slides down a ramp from a height of 3 meters above the ground and reaches the ground with a kinetic energy of 50 j. determine the total work done by friction on the block as it slides down the ramp and explain what has happened to some of the gravitational potential energy

Answers

The total work done by friction on the block (2 kg block starts at rest and is slides down a ramp from a height of 3.0 meters above the ground and reaches the ground with a kinetic energy of 50 J) as it slides down the ramp = 44 J (option 4)

When an external force is applied to a system in a such that one of the components of the force is parallel to the displacement of the system, mechanical energy—the sum of kinetic and potential energy—is transported into or out of the system. Work is the term for the activity of transferring energy.

The change in the block's mechanical energy is what is known as the work done by friction;

ΔME = W

KE - PE = W

(50 - (2 x 3) = W

W = 50 - 6

= 44 J

The question is incomplete, it should be:

A 2.0-kilogram block sliding down a ramp from a height of 3.0 meters above the ground reaches the ground with a kinetic energy of 50 Joules. The total work done by friction on the block as it slides down the ramp is approximately

(1) 6 J

(2) 9 J

(3) 18 J

(4) 44 J

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A sailboat started its journey at 6:30am and reached the destination at 6:30pm. If the distance of the journey was 144 miles, what was the sailboats average speed?___mph

Answers

Answer:

The sailboats average speed was 13 mph.

Explanation:

To calculate the speed of the boat first calculate the total ammountof hours it took the boat to get to its destination. Then divide 144 by that number which comes out to 13.

The average speed of the sailboat is determined as 12 miles per hours.

What is average speed?

The average speed of an object in motion is obtained by dividing the total distance traveled by the object with the time spent in the entire journey.

v = total distance/total time

where;

total distance = 144 milestotal time = from 6:30am to 6:30pm = 12 hours

v = 144/12

v = 12 mph

Thus, the average speed of the sailboat is determined as 12 miles per hours.

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As a baseball is being caught, its speed goes from 30.0 m/s to 0.0 m/s in about 0.0050 s. The mass of the baseball is 0.145 kg.

What is the baseball's acceleration?

What are the magnitude and the direction of the force acting on it?

What are the magnitude and direction of the force acting on the player who caught it?

Answers

Answer: Force = 870 N  

Explanation:

acceleration = a = (final velocity - initial velocity) / time elapsed

a = (0-30)/.005 = -6000 m/s2 (negative sign means the ball is slowing down)

Force = F = mass x acceleration = ma

F = (0.145 kg)(6000 m/s2) = 870 N away from the player throwing the ball

The magnitude of the force on the player catching the ball is equal, 870N.  The mitt acts on the ball with an equal and opposite force (Newton's 3rd Law of Motion)

a 51.5-g super ball traveling at 27.0 m/s bounces off a brick wall and rebounds at 19.0 m/s. a high-speed camera records this event. if the ball is in contact with the wall for 3.95 ms, what is the magnitude of the average acceleration of the ball during this time interval?

Answers

The magnitude of the average acceleration of the ball during its contact with the wall is  68000 m/s².

When the ball collides with the wall, it experiences a change in momentum. The time interval during which the ball is in contact with the wall is 3.95 ms, or 0.00395 s. Using the principle of conservation of momentum,

We  use the average acceleration formula to find the acceleration of the ball during the collision.Initial momentum of the ball before collision = m₁v₁ = (0.0515 kg)(27.0 m/s) = 1.3905 kg⋅m/s. Final momentum of the ball after collision = m₂v₂ = (0.0515 kg)(-19.0 m/s) = -0.9785 kg⋅m/s

According to the conservation of momentum, the initial momentum is equal to the final momentum, so:m₁v₁ = m₂v₂

1.3905 kg⋅m/s = -0.9785 kg⋅m/s  Solving for the mass, we get: = 0.0515 kg

Using the average acceleration formula: a = Δv/Δt = (v₂ - v₁)/Δt = (-19.0 m/s - 27.0 m/s)/0.00395 s = -16455.7 m/s² Since the acceleration is in the opposite direction to the initial velocity, we take the magnitude to be: |a| = 16455.7 m/s² ≈ 68000 m/s².

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when the stimulus intensity increases, _______.

Answers

The magnitude of a action potential doesn't really grow as the stimulus intensity is raised. Instead, there is an increase in the frequency or quantity of action potentials.

Explain about the stimulus intensity?

The strength of a sensory input here to brain is referred to as stimulus intensity.

A stimulus has to have a threshold, or the minimal intensity required for detection and response. For instance, the minimum threshold for hearing something exists.The magnitude of both the action potential doesn't quite grow as the stimulus intensity is raised. Instead, there is an increase in the frequency or quantity of action potentials. A quantity of action potentials produced increases with stimulus intensity. Similar to this, in the motor system, a motor neuron's action potential count directly correlates with the strength of a muscle's contraction when it is innervated by such a motor neuron.

Thus, the magnitude of a action potential doesn't really grow as the stimulus intensity is raised.

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pls help . Which process produces the energy that is used in photosynthesis?

pls help . Which process produces the energy that is used in photosynthesis?

Answers

Answer: Nuclear fusion

Explanation:

Have great day!

:)

Answer:

Nuclear Fusion

Explanation:

Ap3x

After landing on an unfamiliar planet, a space explorer constructs a simple pendulum of length 47.0 cm. The explorer finds that the pendulum completes 101 full swing cycles in a time of 126 s. What is the value of the acceleration of gravity on this planet?

Answers

After landing on an unfamiliar planet, a space explorer constructs a simple pendulum of length 47.0 cm.

The explorer finds that the pendulum completes 101 full swing cycles in a time of 126 s. To find the acceleration of gravity on this planet, follow these steps:

1. Determine the period (T) of the pendulum: Divide the total time (126 s) by the number of full swing cycles (101).


  T = 126 s / 101 = 1.2475 s

2. Convert the length of the pendulum (L) to meters: 47.0 cm = 0.47 m.

3. Use the formula for the period of a simple pendulum, which relates the period (T), length (L), and acceleration of gravity (g):


  T = 2π * √(L/g)

4. Rearrange the formula to solve for g:


  g = (4π²L) / T²

5. Plug in the values for L and T:


 g = (4π² * 0.47 m) / (1.2475 s)²

6. Calculate the acceleration of gravity on this planet:


  g ≈ 9.77 m/s²

The value of the acceleration of gravity on this planet is approximately 9.77 m/s².

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If the ocular lens magnifies a specimen 10x, and the objective lens used magnifies the specimen 35x. What is the total magnification being used to observe the specimen?

Answers

Answer:

350x^2

Explanation:

I'm assuming you're saying you're using them together, like stacking them on top of each other, so if that's the case then this is a simple multiplication problem, which can be written as 10x(35x). Solve it and you get 350x^2.

PLS GIVE RIGHT ANSWER
I GIVE UP
YOU WILL GET 100 PTS or MORE

PLS GIVE RIGHT ANSWERI GIVE UPYOU WILL GET 100 PTS or MORE

Answers

Answer:

it is in explanation part

Explanation:

9

7

3

2

5

8

1

11

14

12

13

Answer:  

Explanation:

the wheels on a bicycle have a 10 inch radius. if the bike must travel exactly 2000 inches , how many revolutions are required? assume that no sliding or slipping occurs between the wheel and the road.

Answers

The wheels on a bicycle have a 10 inch radius. If the bike must travel exactly 2000 inches, the number of revolutions the wheel would make will be 31.85 revolutions.

The perimeter of the circle is called the circumference of circle.

Given, radius of the wheel = 10 inches

Diameter of the wheel = 20 inches

Length required to cover = 2000 inches

For one revolution, distance equal to the circumference moved.

1 rev = π D

1 rev = π * 20

1 rev = 62.8 inches

Number of revolutions to travel 2000 inches is 2000/62.8 = 31.85 rev

Thus, the number of revolutions required are 31.85 rev.

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Water is a powerful solvent because it is a polar molecule true or false

Answers

Answer:

True

Explanation:

what makes something bouncy

Answers

Answer: The speed of the object traveling should be met with the opposite reaction, thus making something like a basketball bounce as high as the force applied to the ball, making both surfaces push off each other until kinetic energy ( form of energy that an object or a particle has by reason of its motion) is lost.

a stone is thrown horizonttaly from a cliff of a hill with an initial velocity of 30m/s it hits the ground at a horizontal distance of 80m from the foot of the hill how long does a stone travel? what is the height of the hill? (please show the process)​

Answers

Answer:

a) Time = 2.67 s

b) Height = 35.0 m

Explanation:

a) The time of flight can be found using the following equation:

\( x_{f} = x_{0} + v_{0_{x}}t + \frac{1}{2}at^{2} \)   (1)

Where:

\( x_{f}\): is the final position in the horizontal direction = 80 m

\( x_{0}\): is the initial position in the horizontal direction = 0

\(v_{0_{x}}\): is the initial velocity in the horizontal direction = 30 m/s

a: is the acceleration in the horizontal direction = 0 (the stone is only accelerated by gravity)

t: is the time =?  

By entering the above values into equation (1) and solving for "t", we can find the time of flight of the stone:  

\( t = \frac{x_{f}}{v_{0}} = \frac{80 m}{30 m/s} = 2.67 s \)

b) The height of the hill is given by:

\( y_{f} = y_{0} + v_{0_{y}}t - \frac{1}{2}gt^{2} \)

Where:

\( y_{f}\): is the final position in the vertical direction = 0

\( y_{0}\): is the initial position in the vertical direction =?

\(v_{0_{y}}\): is the initial velocity in the vertical direction =0 (the stone is thrown horizontally)            

g: is the acceleration due to gravity = 9.81 m/s²

Hence, the height of the hill is:

\( y_{0} = \frac{1}{2}gt^{2} = \frac{1}{2}9.81 m/s^{2}*(2.67 s)^{2} = 35.0 m \)  

I hope it helps you!

When electrons are lost, a ( )
ion is formed.
When electrons are
gained, a ( )
ion is formed.

Answers

When electrons are lost a positive ion is formed. When electrons are gained, a negative ion is formed. I hope this helps

2 p
A neutral sodium atom has 11 protons, and a mass number of 23, how
many electrons does it have? *
11
12
23
34

Answers

Answer:

It has 11 electrons 23_11=11

What does NOT experience gravity?

Answers

Answer:

Astronauts who are orbiting the Earth often experience sensations of weightlessness. These sensations experienced by orbiting astronauts are the same sensations experienced by anyone who has been temporarily suspended above the seat on an amusement park ride. Not only are the sensations the same (for astronauts and roller coaster riders), but the causes of those sensations of weightlessness are also the same. Unfortunately however, many people have difficulty understanding the causes of weightlessness.

Describe how you would draw a diagram that shows the electric field between two particles that
attract each other.

Answers

Answer:

draw the two atomic structures and then focus in on the electrons either gaining or losing and draw them with arrows and dots

Explanation:

i got a 5/5

20 characters

Describe how you would draw a diagram that shows the electric field between two particles thatattract

Answer the question?

Answer the question?

Answers

I don’t know the answer to your question BUT DONT CLICK THE LINK THE BOT GAVE YOU THEY CAN HACK YOU JUST REPORT

What is the velocity of a car that travelled a total of 75 km north in 1.5 hrs?

Answers

V=d*t
Since d=75km=75000m
t=1.5h=3600*1.5= 5400s
=>V=75000*5400
=405000000m/s=4.05*10^8m/s

For diatomic gas Cv = 5R/2 therefore for this gas what is the game?

Answers

For a diatomic gas with Cv = 5R/2, the gamma value of γ is 1.4.

For a diatomic gas, the specific heat at constant volume, Cv, is given by:

Cv = (5/2)R

where R is the gas constant.

The ratio of specific heats, γ (gamma), is defined as:

γ = Cp/Cv

The connection between Cp and Cv for an ideal gas is provided by:

Cp - Cv = R

Therefore, we can find Cp as:

Cp = Cv + R

Substituting the value of Cv, we get:

Cp = (5/2)R + R = (7/2)R

Thus, the specific heat ratio,, is as follows:

γ = Cp/Cv = [(7/2)R] / [(5/2)R] = 7/5 = 1.4

A diatomic gas is a type of gas that consists of molecules composed of two atoms of the same element, such as hydrogen (H2), nitrogen (N2), oxygen (O2), fluorine (F2), chlorine (Cl2), bromine (Br2), and iodine (I2). These molecules have a linear shape and are considered homonuclear diatomic molecules.

Diatomic gases are common in the Earth's atmosphere and are important for various chemical and physical processes. For example, oxygen and nitrogen are essential for life as they are major components of the air we breathe. Chlorine and fluorine are used in the production of many industrial products, while hydrogen is used as a fuel for various applications. Diatomic gases have unique physical and chemical properties, such as specific heat capacity, thermal conductivity, and reactivity, that make them useful for various scientific and engineering applications.

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Complete Question:-

For diatomic gas Cv = 5R/2 therefore for this gas what is the gamma value?

Why do Kepler's laws describe?

Answers

Answer:

The shape of an orbit

Explanation:

Answer:

The geometry of an orbit

Explanation:

AYE PECKS

Consider a cylindrical crew module with a diameter of 5 meters, a length of 15 meters, and a crew of 6 people. The module contains air that is at
standard sea-level atmospheric pressure and temperature. The sea level density of air at 20 degrees Celsius is 1.204 kg/m3.
What is the volume of the crew module? Provide your answer in m' with at least 2 decimal places.​

Answers

Answer:

  294.524 m^3

Explanation:

The volume of a cylinder is given by the formula ...

  V = πr^2h

For a radius of 2.5 m and a length of 15 m, the volume is ...

  V = π(2.5 m)^2(15 m) = 93.75π m^3 ≈ 294.524 m^3

The volume is about 294.52 cubic meters.

what is the weight of an object with a force of 35 pounds ?

Answers

Answer:

Wouldn't it be 17.5. Force doubles in weight.

Explanation:

calculate how many minutes it takes sunlight to reach us from the sun. Light travels at about 3x 10 to the power 8 m/s and the sun is about 144 million km away

Answers

Answer:

7.78 min

Explanation:

calculate how many minutes it takes sunlight to reach us from the sun. Light travels at about 3x 10 to

if each cord can hold no more than 50 n in tension before it fails, what is the maximum weight possible for the flowerpot that the cords can support?

Answers

The maximum weight possible for the flowerpot that the cords can support can be calculated by adding the maximum tension that each cord can hold before it fails. Since each cord can hold no more than 50 N in tension before it fails, the maximum weight possible for the flowerpot that the cords can support is:

Maximum weight = 50 N + 50 N + 50 N + 50 N = 200 N

Therefore, the maximum weight possible for the flowerpot that the cords can support is 200 N.

It is important to note that the maximum weight possible for the flowerpot is dependent on the number of cords that are used to support it. If there are more cords, the maximum weight possible for the flowerpot will be greater. Conversely, if there are fewer cords, the maximum weight possible for the flowerpot will be less.

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Calculate the momentum of a 2500 kg truck traveling 110 km/h

Answers

Answer:

275000

Explanation:

momentum = mass * velocity

2500*110=275000

i think it's 275,000

Tell me something you learned yesterday from the field trip. What did you like and dislike ITS FOR EMT CLASS WE WENT TO A COLLEGE PLEASE HELP

Answers

You might have to say something random for the question…And it could be the SMALLEST detail you learned-
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