Answer:
d
Explanation:
SWOT ANALYSIS OF HARVEST MOON - AUSTRALIAN HORTICULTURE AND
AGRICULTURE COMPANY
The SWOT analysis of Harvest Moon, an Australian horticulture and agriculture company, reveals its strengths, weaknesses, opportunities, and threats in the industry.
Strengths:
Strong market presence: Harvest Moon has established a strong presence in the Australian horticulture and agriculture industry, allowing it to leverage its brand and reputation.
Diverse product portfolio: The company offers a wide range of horticultural and agricultural products, catering to various customer demands and preferences.
Sustainable practices: Harvest Moon prioritizes sustainable farming methods, which can be a competitive advantage as consumers increasingly value environmentally friendly products.
Weaknesses:
Limited geographic reach: Harvest Moon's operations may be primarily focused on Australia, limiting its potential for growth in international markets.
Dependency on weather conditions: As an agriculture company, Harvest Moon is vulnerable to fluctuations in weather patterns, which can impact crop yields and profitability.
Limited technological integration: The company may lag behind competitors in adopting advanced technologies, which could hinder operational efficiency and productivity.
Opportunities:
Growing demand for organic products: Harvest Moon can capitalize on the increasing consumer preference for organic and locally sourced produce by expanding its organic farming practices.
Export potential: The company can explore opportunities to export its products to new markets, leveraging Australia's reputation for high-quality agricultural goods.
Technology adoption: Integrating advanced technologies, such as precision farming and data analytics, can enhance productivity and resource management for Harvest Moon.
Threats:
Intense competition: The horticulture and agriculture industry is highly competitive, with numerous players vying for market share, which can pose challenges for Harvest Moon's growth and profitability.
Changing consumer preferences: Shifting consumer preferences and trends towards alternative food products or dietary choices may impact the demand for traditional horticultural and agricultural products.
Climate change and environmental risks: Climate change-related factors, such as extreme weather events and water scarcity, can disrupt Harvest Moon's operations and crop yields, increasing production costs and risks.
Overall, by leveraging its strong market presence, diversifying its product portfolio, and adopting sustainable practices, Harvest Moon can capitalize on opportunities and mitigate threats to maintain its competitive position in the Australian horticulture and agriculture industry. To address weaknesses, the company should consider expanding its geographic reach, investing in technological advancements, and adapting to changing consumer preferences.
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Which method of bread making is not dependent on the length of time the dough sits to rise?
a. sponge dough method
b. straight dough method
c. continuous method
d. prime bake method
The straight dough method of bread making is not dependent on the length of time the dough sits to rise. This method involves combining all the ingredients, including the yeast, in one mixing bowl and kneading the dough until it is smooth and elastic.
The dough is then set aside to rise once, for a specific amount of time, usually around an hour or until it has doubled in size. After the first rise, the dough is shaped into loaves or rolls and left to rise again before baking.
In contrast, the sponge dough method involves creating a starter dough, or "sponge," which is left to ferment for a longer period of time, up to 24 hours, before being incorporated into the final dough. The continuous method involves a constantly fermenting dough, while the prime bake method skips the rising process altogether by using chemical leaveners such as baking powder or baking soda.
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the cylinder is 4872 N and the cylinder exerts a pressure of 812 N/m2. on the
ground.
To 2 decimal places, what is the diameter of the cylinder?
The diameter of the cylinder is 2.49 meters if the cylinder is 4872 N and the cylinder exerts a pressure of 812 N/m2. on the ground.
First, we need to find the area of the base of the cylinder that is in contact with the ground. To do this, we can use the formula for pressure: Pressure = Force/Area. Rearrange the formula to solve for Area: Area = Force/Pressure.
Given:
Force exerted by the cylinder (N) = 4872 N
Pressure exerted by the cylinder (N/m^{2}) = 812 N/m^{2}
Calculate the Area:
Area = Force/Pressure = 4872 N / 812 N/m^{2} = 6 m^{2}
Now, we know the area of the base of the cylinder. Since the base is a circle, we can use the formula for the area of a circle: Area = π * (diameter/2)^{2}. Rearrange the formula to solve for diameter: Diameter = 2 * √(Area/π).
Calculate the Diameter:
Diameter = 2 * √(6 m^2/π) ≈ 2.49 meters
The diameter of the cylinder, to 2 decimal places, is approximately 2.49 meters.
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The Fourth Amendment to the United States Constitution forbids what type of searches and seizures? Group of answer choices illegal unsupervised unreasonable undercover
The Fourth Amendment to the United States Constitution forbids unreasonable searches and seizures.
The Fourth Amendment protects individuals from unreasonable searches and seizures conducted by the government. It establishes that people have the right to be secure in their persons, houses, papers, and effects, and prohibits the government from conducting searches or seizures without a valid warrant based on probable cause.
The amendment requires that searches and seizures be conducted with a warrant, supported by probable cause, or under certain exceptions recognized by the courts, such as consent, exigent circumstances, or search incident to arrest. It aims to safeguard individuals' privacy and protect them from arbitrary governmental intrusion into their personal lives.
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The isotope of plutonium 238 Pu is used to make thermoelectric power sources for spacecraft. Suppose that a space probe was launched in 2012 with 2.0 kg of 238 Pu.
The space probe launched in 2012 with 2.0 kg of plutonium-238 (238Pu) is utilized for thermoelectric power sources in spacecraft.
Plutonium-238 (238Pu) is an isotope of plutonium that undergoes radioactive decay, emitting heat in the process.
This unique property makes it an ideal choice for generating power in space missions where sunlight is limited, such as deep space probes or missions to distant planets. The heat produced by the radioactive decay of 238Pu is converted into electricity using thermoelectric materials.
In the context of the space probe launched in 2012, the 2.0 kg of 238Pu serves as the fuel for the thermoelectric power source.
The heat generated by the decay of the plutonium is harnessed to produce electricity through the Seebeck effect.
Thermocouples, made from two dissimilar materials, are used to create a temperature gradient. As the heat flows across the junction of the thermocouple, it creates a voltage difference that can be utilized to power the spacecraft's instruments, systems, and communication devices.
The use of 238Pu as a power source offers several advantages for space missions.
Unlike solar panels, which are dependent on sunlight, thermoelectric generators powered by plutonium-238 can operate in deep space or in regions where solar energy is insufficient.
This is particularly crucial for missions that venture beyond the orbit of Mars or explore dark, shadowed areas where sunlight is scarce.
Additionally, the longevity of 238Pu's decay heat allows for prolonged power generation, ensuring continuous operation and data transmission over long-duration missions.
Plutonium-238 (238Pu) is a scarce and highly valuable resource due to its applications in space exploration. It is primarily produced through the irradiation of neptunium-237 in nuclear reactors.
The production and handling of 238Pu require strict safety measures due to its high radioactivity. Furthermore, the dwindling global supply of 238Pu has posed challenges for future space missions relying on this isotope.
The development of alternative power sources and the search for innovative ways to produce and utilize plutonium-238 remain areas of active research in the field of space exploration.
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Please do all of i will give you brainlest and thanks to best answer plz do it right
Answer:
the answer is B
Explanation:
because i had this question in 8th grade
a mini rubric's cube has a with of 3cm. if the cube weighs 6grams calculate its density
Answer:
the density is 2
Explanation:
p= m/v
p is density
m is mass
v is volume
6/3 = 2
Which image shows the correct way of lining up vectors to add them together? A. two arrows lined up facing away from each another B. two arrows lined up one after the another C. two arrows lined up facing each another D. two arrows facing opposite to each other
The image shows the correct way of lining up vectors to add them together, that the two arrows lined up one after the other, therefore the correct answer is option B.
What is a vector quantity?The quantities that contain the magnitude of the quantities along with the direction are known as the vector quantities.
Examples of vector quantities are displacement, velocity acceleration, force, etc.
Thus, the image shows the correct way of lining up vectors to add them together, that the two arrows lined up one after the other, therefore the correct answer is option B.
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write me a presentation of oxygen
Susan makes the following entry in her notebook: “On Friday we were given a blue liquid in a shallow container. We placed it on the windowsill over the weekend. On Monday morning, there was no liquid left, but the dish had some solid blue stuff in it.”
a. Was the blue liquid in the dish a heterogenous mixture, a solution, or a pure substance? Explain your choice.
b. Write a few sentences about what you think happened in the dish.
Answer:
Explanation:
a. From the information provided in the question, the blue liquid is a solution. This is because a solution is a type of homogeneous mixture (that has an evenly distributed solute in a solvent) which is the reason the liquid was said to be blue (and not immiscible blue solid in a liquid) but after been exposed to heat became just a blue solid. Typically, a solution has a solute and a solvent (combined), the solute here is the blue solid while the solvent is the liquid that made the combination a liquid.
b. Since the dish containing the liquid was placed on a windowsill, it can be assumed that the dish was subjected to heat from the sun which caused the liquid (in the solution) to evaporate after exposure to the heat from the sun (over the weekend) leaving the blue solid solute (of the solution) to remain in the dish. This can be referred to as evaporation to dryness in separation techniques (if the goal was to intentionally separate the solid solute from the liquid solvent).
The distance between mankato, mn, and duluth, mn, is approximately 237 miles one way. how far is that in kilometers?
The distance between Mankato and Duluth is 237 miles i.e. equal to 381.415 kilometer approximately.
Distance can be define as, the total movement of an object without any regard to direction. Thus in very simple word the distance between two points is the length of the line segment that connects them. The distance between two points is always positive.
A line segment is a term of geometry that, the part of a line having two endpoints
The distance between Mankato and Duluth = 237 miles
1 miles = 1.60934 kilometers
237 miles = 237 × 1.60934 kilometers
237 miles = 381.41358 kilometers
Therefore ,we can write the distance between Mankato and Duluth in kilometers is 381.4 kilometers.
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In what work of fiction does the dread pirate roberts appear?.
The dread pirate Roberts appears in the novel "The Princess Bride" by William Goldman. In this classic story, the character Westley adopts the identity of the dread pirate Roberts as he seeks revenge against the evil prince Humperdinck.
The dread pirate Roberts is known throughout the land as a fearsome and unstoppable pirate, and his reputation strikes dread into the hearts of all who hear his name. Despite his fearsome reputation, however, the dread pirate Roberts is ultimately revealed to be a clever and resourceful hero, who uses his wit and cunning to outsmart his enemies.
The Dread Pirate Roberts appears in the work of fiction called "The Princess Bride" by William Goldman. This character is a legendary pirate known for his ruthlessness and cunning, playing a significant role in the story's plot.
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Types of Spectra 5) Stars like our Sun have low-density, gaseous atmospheres surrounding their hot, dense cores. If you were looking at the spectra of light coming from the Sun (or any star), which of the three types of spectrum would be observed? Explain your reasoning.
The spectrum observed from the Sun (or any star) would exhibit an absorption spectrum. This is because the outer gaseous atmosphere of the star absorbs specific wavelengths of light, resulting in dark absorption lines in the spectrum.
In the cooler, lower-density outer atmosphere, where white light from the star travels, some atoms or molecules in the atmosphere absorb photons with particular energy. In the spectrum, these absorptions show up as black lines at specific wavelengths. The specific set of absorption lines that each element or molecule generates results in a distinctive pattern that can be used to identify the elements that are present in the star's atmosphere.
The absorption spectrum offers insightful data on the chemical make-up and physical characteristics of the star. Astronomers can ascertain the elements present, their abundances, and other characteristics like the temperature, pressure, and velocity of the star's atmosphere by examining the absorption lines.
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A car moving on a straight level road changes its speed from 3.5m/s to 4.5m/s in 5.00 seconds. Find it’s acceleration
Answer:
0.2m/s2
Explanation:
acceleration= change in velocity ( in this case speed)/ change in time.
4.5-3.5=1m/s
change in time=5-0 =5
1m/s divided by 5 seconds acceleration as the result
You must park at least _____ away from a fire hydrant.
Answer: at least 10 feet away
Explanation:
infrared radiation has frequencies from 3.0×1011 to 3.0×1014 hz, whereas the frequency region for radio wave radiation is 3.0×105 to 3.0×107 hz.
This statement is incorrect. The frequency range mentioned for infrared radiation and radio wave radiation is not accurate. Infrared radiation generally has frequencies ranging from 3.0×10^11 Hz (300 GHz) to 3.0×10^14 Hz (300 THz).
Infrared radiation is associated with thermal energy and is commonly used in applications such as heat sensing, communication, and remote control systems. Radio waves, on the other hand, have frequencies ranging from 3.0×10^5 Hz (300 kHz) to 3.0×10^7 Hz (30 MHz) for traditional radio broadcasting. However, radio waves can extend to much higher frequencies in other applications, such as Wi-Fi and satellite communication. It's important to note that the frequency ranges of different types of electromagnetic radiation can overlap, and they can be used for various purposes depending on the specific application.
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A person is driving his Lamborghini with a mass of 2,000 kg at 10 m/s. He sees a police car around the corner and slows down to 2m/s. What is his change in momentum? ________kgm/s
The change in the momentum of the person is 16,000 kg m/s.
What is the change in momentum of the person?
The change in the momentum of the person driving the Lamborghini is calculated by applying the following formula as shown below.
ΔP = m ( u - v )
where;
ΔP is the change in momentumm is the mass of the Lamborghini u is the initial speed of the personv is the final speed of the person after slowing downΔP = m ( u - v )
ΔP = 2,000 kg ( 10 m/s - 2 m/s )
ΔP = 2,000 kg ( 8 m/s)
ΔP = 16,000 kg m/s
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Hii!!!
So are like properties of matter different from physical properties?
Because I’m doing an assignment and I’m not so sure!
Answer:
no
Explanation:
because The properties of matter include any traits that can be measured,
Physical properties can be observed or measured.
Please hurry Describe why electric currents can be dangerous
Answer:
Cardiac Arrest, burns, and nerve damage.
Explanation:
Basically, the main risk is cardiac arrest, caused by the electric current interfering with the normal operation of the heart muscle. Other possible damages are burns due to the electric energy vaporizing the water inside the cells, and nerve damage caused by excessive current through the nerves.
DNA is composed of subunits called nucleotides. What are the 3 parts of a nucleotide?
Explanation:
1) Nitrogenous base
2) Pentose sugar
3) One or more phosphate group
16.
The parents in Jana's neighborhood rely on her to baby-sit for them. Jana loves little children
and is very good with them. She enjoys her babysitting business on some week nights and
many weekends. She has dance class 4 times a week. Therefore, Jana has difficulty finding
time to do her homework What area is she weak in?
Answer:
doing her homework/finding time to do important things
The people who write computer programs
Answer:
Someone who writes software or programs for computers is called a programmer.
Explanation:
A man with a mass of 60 kg rides a bike with a mass of 13 kg. What is the force needed to accelerate the bike at 0.90 m/s2?
A. 65.7
B.657
C.75.6
D.756
What happens when an object is moved against gravity, such as rolling a toy car up a ramp?
Answer:
it goes up until we help it to but the moment we stop support it gets affected by gravity and goes back
Explanation:
When a warm air mass collides with a cold air mass, the warm air mass rises above the cold air mass leading too:
A) Sunny skies
B) Global warming
C) The formation of clouds and rain
D) Volcanic eruptions
Answer: It leads to a front. A front is.., I don't know how to explain it, so I'll add a picture. Fronts are made out of clouds and usually bring rain. So the answer is C: The formation of clouds and rain.
Explanation:
Seeds are often found on which part of a gymnosperm?
branch
leaf
cone
stem
A pilot of a large passenger airliner hears that a thunderstorm is in the area. What kinds of
dangers might the thunderstorm pose to the aircraft, and what path should the pilot take in
relation to the storm to keep aircraft, crew, and passengers safe?
Answer:
the pilot should recourse back to the airport it og was in
Explanation:
04-10 points: Evaluate S JE 3z dv Where E is the region below x2 + y2 + z2 = 1 and inside z = Vx2 + y2
On evaluating the above integral, we get,\(S = 4π/3\)
Where E is the region below \(x^2 + y^2 + z^2 = 1\) and inside \(z = Vx^2 + y^2\)
As we can see the region of integration involves the sphere and the paraboloid. The region of integration can be separated into two parts, the upper part is described by the paraboloid and the lower part is described by the sphere.
Here, the sphere has the equation x^2 + y^2 + z^2 = 1, which is the equation of a unit sphere centered at the origin.
Whereas, the paraboloid has the equation z = Vx^2 + y^2 , which is the equation of a paraboloid that opens upwards in the z direction.
Let us rewrite the integral with respect to z first,
\(S = ∫∫_(x^2+y^2≤1-z^2 )^{}▒〖∫_0^√(1-z^2 )▒〖∫_0^(2π)▒3z rdθ drdz〗〗\)
Now, we can solve this integral by substituting x = rcosθ, y = rsinθ and z = z, which gives us the following,
\(S = ∫∫_(r^2≤1-z^2 )^{}▒〖∫_0^√(1-z^2 )▒〖∫_0^(2π)▒3z r^2 sinθ drdθ dz〗〗\)
On evaluating the above integral, we get, S = 4π/3
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Calculate the potential difference if 20j of energy are transferred by 8c of charge.
The potential difference if 20j of energy are transferred by 8c of charge is 2.5 V.
The potential difference, also known as voltage, is defined as the amount of energy per unit charge that is transferred between two points.
The formula for potential difference is given by:
V = W / Q
where V is the potential difference, W is the amount of energy transferred, and Q is the amount of charge transferred.
Given that 20 J of energy is transferred by 8 C of charge, we can substitute these values into the equation:
V = 20 J / 8 CV
= 2.5 J/CV
= 2.5 V
Therefore, the potential difference is 2.5 V.
It is important to note that the unit of energy is Joules (J) and the unit of charge is Coulombs (C).
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A series circuit consists of a 0.55 H inductor with an internal resistance of 8.0 Ω connected in series with a 4-Ω resistor, a switch, and a 12 V battery.(a) When the switch is closed, what is the initial current through the 4-Ω resistor?(b) After the switch has been closed, what is the maximum current in the 4-Ω resistor?
Resist are in series, so the total resistance R= 8Ω+4Ω=12Ω
Therefore, the maximum current in the 4Ω resistors is I = E/R
I = 12V/12Ω = 1A I = 1A
But
When the switch is closed, initially. The inductor behaves as an open. Circuit. Therefore, the current in the 4Ω resistor is zero
Hence,
(a) At initial, I = OA
(b) after a very long time, I = 1A
A practical electrical energy source that is a linear circuit can be represented as an ideal voltage source in series with an impedance according to Thévenin's theorem. This impedance is called the internal resistance of the source. Internal resistance refers to the resistance to current flow provided by the cells and the battery itself, resulting in heat generation.
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