Only about 11% of the volume of the iceberg is exposed.
[tex]\texttt{ }[/tex]
Further explanationThe basic formula of pressure that needs to be recalled is:
Pressure = Force / Cross-sectional Area
or symbolized:
[tex]\large {\boxed {P = F \div A} }[/tex]
P = Pressure (Pa)
F = Force (N)
A = Cross-sectional Area (m²)
Let us now tackle the problem !
[tex]\texttt{ }[/tex]
Given:
Density of Ice = ρ_ice = 0.92 g/cm³
Densiy of Seawater = ρ_seawater = 1.03 g/cm³
Asked:
Volume of the exposed iceberg = ΔV = ?
Solution:
We will use Archimedes' principle to solve the problem as follows:
[tex]w = F[/tex]
[tex]mg = \rho_{seawater} g V'[/tex]
[tex]\rho_{ice} \ g V = \rho_{seawater} \ g V'[/tex]
[tex]V' = ( \rho_{ice} \div \rho_{seawater} ) V[/tex]
[tex]V' = (0.92 \div 1.03) V[/tex]
[tex]V' = \frac{92}{103} V[/tex]
[tex]\texttt{ }[/tex]
[tex]\Delta V = V - V'[/tex]
[tex]\Delta V = V - \frac{92}{103} V[/tex]
[tex]\Delta V = \frac{11}{103}V[/tex]
[tex]\Delta V \approx 11 \% V[/tex]
[tex]\texttt{ }[/tex]
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Answer detailsGrade: High School
Subject: Physics
Chapter: Pressure
[tex]\texttt{ }[/tex]
Keywords: Gravity , Unit , Magnitude , Attraction , Distance , Mass , Newton , Law , Gravitational , Constant , Liquid , Pressure
Explain why nuclear fusion takes place only in the center of stars
Star a is green, star b is yellow, and star c is red. which one of these is the hottest star?
TRUE OR FALSE!? HELP!!!!!
a) During deposition, particles of molecular nitrogen become farther apart.
b) When a piece of copper melts, its particles remain the same.
(Please, explain your answer!!!!)
Answer:
False
True
Explanation:
False: The reason is because theyare bonded by molecules
True: This is because a physical change does not change the chemical composition
When experimenting, you purposely change the temperature, temperature is the ___ variable?
A van slows down as it travels up a steep hill. Its speed goes from 20m/s at the bottom of the hill to 12m/s when it reaches the top 8 seconds later. How far has the van travelled between the bottom and the top of the hill?
Answer
13.06 m
Explanation
The height reach ca be calculated using the one of the linear equation.
v² = u² - 2gs
where u ⇒ is the initial speed,
v ⇒ is the final speed
g ⇒ is the acceleration due to gravity and
s ⇒ the height reached.
v² = u² - 2gs
12² = 20² - (2×9.8×s)
144 = 400 - 19.6s
19.6s = 400 - 144
= 256
s = 256/19.6
= 13.06 m
Answer:
d = 128 m
Explanation:
Here given that van slows down as it travels up a inclined steep hill
So here we can assume that through out the motion its acceleration will remain constant.
Now we can use kinematics to find out the distance traveled by it
As we know that acceleration is defined as
[tex]a = \frac{v_f - v_i}{t}[/tex]
here we know that
[tex]v_f = 12 m/s[/tex]
[tex]v_i = 20 m/s[/tex]
time = 8 s
now we have
[tex]a = \frac{12 - 20}{8} = -1 m/s^2[/tex]
Now in order to find out the distance it moved we can use
[tex]v_f^2 - v_i^2 = 2 ad [/tex]
now we will plug in all above data
[tex]12^2 - 20^2 = (2)(-1)d[/tex]
[tex]144 - 400 = -2d[/tex]
[tex]d = \frac{-256}{-2} = 128 m[/tex]
so it will cover total distance of 128 m
Momentum Monster does 600,000 joules of work in 10 seconds. How much power is that in watts?
I think it's 60,000, but I need someone who knows for sure whether this is correct or not.
Often what one expects to see influences what is perceived in the surrounding environment. Please select the best answer from the choices provided T F
This statement is in-doubtingly true
It is true that Often what one expects to see influences what is perceived in the surrounding environment.
What is person's surrounding environment?The environment can be defined as the sum of all living and non-living elements and their effects on human life.
Non-living or abiotic elements include water, land, sunlight, rocks, and air, while all living or biotic elements are animals, plants, forests, fisheries, and birds.
The noun surroundings can refer to the immediate environment, including all nearby objects, as well as the location itself and the circumstances or conditions in which you find yourself.
When someone constructs a house, the surroundings influence which direction it faces and how many windows it has.
What one expects to see frequently influences what one perceives in the surrounding environment.
Thus, the given statement is true.
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How many times does the kinetic energy of a car increase when traveling 60mph as opposed to traveling 30mph?
In a crash test, a 2,500 kg car hits a concrete barrier at 1.3 m/s2. If the car strikes the barrier with a force of 3,250 N, how much resistance force does the barrier provide? N This pair of forces is an example of Newton’s law of motion.
The concrete barrier provides a resistance force equal to the car's impact force of 3,250 N, illustrating Newton's Third Law of Motion, wherein every action has an equal and opposite reaction.
Explanation:In the scenario where a 2,500 kg car hits a concrete barrier with a force of 3,250 N, it is important to understand Newton's laws of motion to determine the resistance force provided by the barrier. Newton's Third Law states that for every action, there is an equal and opposite reaction. Hence, the barrier would provide an equal resistance force of 3,250 N back on the car, as it is the action-reaction pair described by this law.
Newton's Third Law of Motion :
This situation exemplifies Newton's Third Law of Motion, which is often paraphrased as, 'To every action, there is always an opposed and equal reaction.' In crash tests and automobile mechanics, this law helps us understand and predict the forces involved during a collision. When the car exerts a force on the barrier, the barrier exerts an equal and opposite resisting force on the car, confirming that the car's impact force and the barrier's resistance force are indeed equal.
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A valley of rolling hills is an example of _____.
monoclines
anticlines and synclines
horsts and grabens
fault-block mountains
I believe it's
A valley of rolling hills is an example of anticlines and synclines.
Roger pushes a box on a 30° incline. If he applies a force of 60 newtons parallel to the incline and displaces the box 10 meters along the incline, how much work will he do on the box?
A 1.50-liter sample of dry air in a cylinder exerts a pressure of 3.00 atmospheres at a temperature of 25°C. Without changing the temperature, a piston is moved in the cylinder until the pressure in the cylinder is reduced to 1.00 atmospheres. The volume of the gas is _____.
The volume of the gas after the change of pressure will be 4.5 litres.
What is Boyle's law?Boyle's law, also known as the Boyle-Mariotte law or Mariotte's law, is an experimental gas law that states that as a container's volume grows, a gas's pressure tends to drop. The temperature remains constant.
Given that a 1.50-litre sample of dry air in a cylinder exerts a pressure of 3.00 atmospheres at a temperature of 25°C. Without changing the temperature, a piston is moved in the cylinder until the pressure in the cylinder is reduced to 1.00 atmospheres.
Use Boyle's law:-
P₁V₁ = P₂V₂
Put the values of initial pressure, volume and final pressure then calculate the value of final volume as the temperature of the process is constant.
1.50 x 3.00 = V x 1.00 atm
V₂ = 1.50 x 3.00 / 1.00
V₂ = 4.50 L
Therefore, the volume of the gas will be 4.5 litres.
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Helium is considered a noble gas because it has a _blank___ valence electron shell
Answer:
Helium has a full valency electron shell
Explanation:
Noble gases are gases at in general they don't react with any other element easily. They are a group of elements that make up Group 18 on the periodic table. They are referred to as inert gases because of their unreactive nature because they have a full valency electron shell. They have the following general properties: colourless, odourless, tasteless, and are nonflammable gases.
A satellite of mass 6000 kg orbits the earth and has a period of 5700 s. determine the radius of its circular orbit.
The radius of the satellite's circular orbit is approximately 11,350,000 meters or 11,350 kilometers.
Given,
Mass of satellite = 6000 kg
Revolution time = 5700s
To determine the radius of the circular orbit of a satellite orbiting the Earth, the following equation based on the laws of circular motion can be used:
[tex]r = (\frac{G \times M \times T^2}{4\pi^2})^{(1/3)}[/tex]
Where:
r is the radius of the orbit
G is the gravitational constant (approximately 6.67430 × 10⁻¹¹m³ kg⁻¹ s⁻²)
M is the mass of the Earth (approximately 5.972 × 10²⁴ kg)
T is the period of the orbit
Substituting these values into the equation:
[tex]r = (\frac{G \times M \times T^2}{4\pi^2})^{(1/3)}[/tex]
[tex]r = \frac{6.67430 \times 10^{-11} \times 5.972 \times 10^{24} \times (5700)^2}{(4\pi^2)^{(1/3)}}[/tex]
r = 1.135 × 10⁷ meters
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In a bumper car arena, two cars of equal mass are heading straight toward each other. The orange one is traveling at a speed of 5 meters per second. The green one is traveling at a speed of 2 meters per second. Which of the forces most affects the motion of the bumper cars after they collide?
Answer: D.
Explanation: Orange, at 3 meters per second if you calculate the net force being applied to the system.
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True or false the amount of solar radiation an area receives is dependent on the angle of the energy and whether it is filtered through the atmosphere
The wavelength of a wave is the distance between
When a system of measurement is based on units of ten, it is called a ____system.
Answer:
It is called a metric system!
Explanation:
A ball is at rest on the floor of a car moving at a constant velocity. What will happen to the ball if the car swerves suddenly to the left, and why will this happen?
The ball would move to the right under a thrust force.
What would happen to the ball?We know that in physics that an object would continue in its state of uniform motion or at a state of rest unless it has been acted upon by external forces that are acting on the object.
In this case, we have a ball that is at rest and then we have a car that is moving uniformly but is suddenly swerved to the left hand side. We know that the thrust that is produced by the car would act on the ball in the opposite direction.
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What is direct evidence? Another name? An example?
Direct evidences are obtained rom the investigation area itself or directly from a sample under study and not from previous records or surveys.
What is direct evidence?Direct evidence is a type of proof that frequently utilizes the form of witness testimony or eyewitness narratives. When a witness states that they witnessed an accused person conduct a crime, overheard someone else say a certain word or words, or saw a certain act occur, these are examples of direct evidence.
The truth of an assertion is supported directly by direct evidence, i.e., without an intermediary inference. A witness describes what they personally saw or heard, but they may also use any other sense, such as scent, touch, or pain.
Other evidences collected from surveys, or from previous records, hearing from indirect witness etc. are not take as direct evidences.
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Your car and the trailer it is towing are initially at rest. you apply an acceleration of 1.75 m/s2 to get the vehicles moving. the mass of your car is 1200 kg and the mass of the trailer is 540 kg. (a) determine the net force acting on the car.
Final answer:
The net force acting on the car, which is towing a trailer, is calculated using Newton's second law of motion and is found to be 3045 newtons.
Explanation:
To determine the net force acting on the car, we use Newton's second law of motion, which states that the force acting on an object is equal to the mass of the object multiplied by its acceleration (F = ma). Since the car and trailer are initially at rest and they start to accelerate together, the net force on the car can be calculated by adding the masses of the car and the trailer and then multiplying the total mass by the given acceleration.
First, we find the total mass of the car and the trailer combined: total mass = mass of car + mass of trailer = 1200 kg + 540 kg = 1740 kg. Then, we multiply this total mass by the given acceleration to find the net force:
Net force = total mass × acceleration = 1740 kg × 1.75 m/s² = 3045 N.
Therefore, the net force acting on the car is 3045 newtons.
What does the law of conservation of energy state?
The total amount of energy remains constant in an isolated system. It implies that energy can neither be created nor destroyed, but can be change from one form to another.
3x/y=6g/b solve for x
It usually takes more force to start an object sliding than it does to keep an object sliding because static friction is usually _____greater _______________ than sliding friction.
A graduated cylinder has a mass of 80 g when empty. when 20 ml of water is added, the graduated cylinder has a mass of 100 g. if a stone is added to the graduated cylinder, the water level rises to 45 ml and the total mass is now 156 g. what is the density of the stone
Answer:
[tex]\rho_{stone} = \frac{56 g}{25 mL} = 2.24 g/mL[/tex]
Explanation:
Mass of the cylinder = 80 g
water added in the cylinder = 20 mL
mass of water + cylinder = 100 g
mass of water added = 100 g - 80 g = 20 g
density of water = [tex]\frac{mass}{volume}[/tex]
[tex]\rho = \frac{20 g}{20 mL} = 1 gm/mL[/tex]
now when stone is put into the cylinder then the volume reached to 45 mL
so volume displaced by the stone = 45 mL - 20 mL
V = 25 mL
mass of stone = 156 g - 100 g = 56 g
now density of stone is
[tex]\rho_{stone} = \frac{mass}{volume}[/tex]
[tex]\rho_{stone} = \frac{56 g}{25 mL} = 2.24 g/mL[/tex]
Collaboration and communication are important in science because?
Final answer:
Collaboration and communication in science are key to disseminating research findings and advancing scientific knowledge. Through collaboration and peer review, scientific work is validated and can be further built upon. Effective communication also helps in securing funding and informing the public.
Explanation:
Collaboration and communication are crucial in science because they enable the dissemination of research findings and the advancement of scientific knowledge. Through collaboration, scientists can plan, conduct, and analyze research collectively, which enhances the quality and impact of their work. Effective communication is necessary for sharing results beyond the confines of conferences and meetings, achieving this through peer-reviewed publications. These publications undergo a process of peer review to ensure that the research is original, significant, logical, and thorough. This process also allows other scientists to reproduce the experiments and expand upon the findings, creating a foundation for further discovery and innovation.
Furthermore, effective communication skills are critical when interacting with funding agencies or the general public to convey the importance and relevance of scientific work. Without transparent communication and open collaboration, scientific progress would be stymied, and opportunities for new discoveries may be lost. Additionally, successful collaboration often relies on technology to bridge geographical distances, allowing for ongoing dialogue and exchange of ideas without the necessity of being in the same physical location.
A tennis ball bounces on the floor three times, and each time it loses 23.0% of its energy due to heating. how high does it bounce after the third time, if we released it 4.0 m from the floor?
The tennis ball will bounce to a height of approximately 1.828 meters after the third bounce when it loses 23.0% of its energy with each bounce starting from a height of 4 meters.
If a tennis ball is released from a height of 4 meters and bounces on the floor three times, each time losing 23.0% of its energy due to heating, we can calculate its height after the third bounce. The initial potential energy (PE) of the ball when released is converted into kinetic energy as it falls and then back into potential energy as it bounces upward. After each bounce, the ball retains only 77% (100% - 23%) of its energy because of the energy lost to heat. Therefore, after the third bounce, the ball has
(0.77)³ or about 45.7% of its original energy.
Here is the calculation to find the height (h) after the third bounce:
[tex]PE{initial }[/tex]= mg[tex]h_{initial}[/tex] = mg[tex]h_{final}[/tex]
[tex]h_{final}[/tex] = (0.77)³ h_initial
[tex]h_{final}[/tex] = (0.77)³
(4.0 m) = 0.457
(4.0 m) = 1.828 m.
The tennis ball will bounce to a height of approximately 1.828 meters after the third bounce.
Protons
Neutrons
Which statement is accurate for these two sub-atomic particles.
A) They both have a neutral charge.
B) They both have a positive charge.
C) They are both located in the nucleus.
Eliminate
D) They are both located outside the nucleus.
Answer:
c
Explanation:
John has a boat that will travel at the rate of 15 kph in still water. he can go upstream for 35 km in the same time it takes to go 140 km downstream. how fast is his boat traveling when he goes downstream? 22 kph 24 kph 26 kph
Answer:
24kph
Explanation:
John has a boat that will travel at the rate of 15 kph in still water. he can go upstream for 35 km in the same time it takes to go 140 km downstream, then it would go 24 kph downstream, therefore the correct answer is option B.
What is speed?The total distance covered by any object per unit of time is known as speed. It depends only on the magnitude of the moving object. The unit of speed is a meter / second.
As given in the problem John has a boat that will travel at the rate of 15 kph in still water. he can go upstream for 35 km in the same time it takes to go 140 km downstream.
Let us take the speed of the stream would be x kph.
35 / 15 -x = 140 / 15 + x
x = 9
The speed of the boat downstream = 15 + 9
= 24 kph
Thus, it would go 24 kph downstream, therefore the correct answer is option B.
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In which situations is nuclear power most beneficial? Check all that apply.
1.if there is a high concentration of people
2.if there is a nearby supplies of fossil fuels
3.if there is an isolated location
4.if there are few other energy resources
5.if there are few people in scattered towns
Nuclear power is particularly beneficial in areas with high population concentrations and where there are few other energy resources. Due to uranium's high energy efficiency, the environmental impact is minimized, and it's a carbon-free power source, helping combat global warming. However, its benefits need to be weighed against potential safety and sustainability risks.
Explanation:In which situations is nuclear power most beneficial? Nuclear power is most advantageous in scenarios where there are few other energy resources and in high-concentration population centers. The benefits of nuclear energy over fossil fuels are numerous, particularly when it comes to the efficiency of uranium. This substance generates significantly more power per unit weight or volume than coal, meaning less material needs to be mined, thus reducing environmental impact. In addition, nuclear power does not emit carbon dioxide during operation, making it a strong contender for reducing global warming.
Contrary to the proximity of fossil fuel supplies, nuclear power does not rely on nearby sources of fossil fuels, making it beneficial for isolated locations where transportation of fossil fuels would be logistically challenging or expensive. Likewise, for areas with a high concentration of people, the scalability and high-energy yield of nuclear power can meet the substantial electricity demands more effectively. However, when it comes to regions with scattered populations such as few people in scattered towns, distributed generation technologies like solar and wind might be more suitable and cost-effective.
It is essential, however, to weigh these advantages against the sustainability and safety concerns associated with nuclear power. The production of dangerous waste that must be stored safely for thousands of years, the potential for nuclear proliferation, and the risk of accidental radiation leaks are crucial factors that need to be considered carefully by scientists, policy makers, and citizens alike.
Nuclear power is most beneficial in 1. if there is a high concentration of people, 3. if there is an isolated locations, and 4. if there are few other energy resources.
Nuclear power is beneficial in certain situations due to its capability to generate large amounts of energy without emitting air pollutants like fossil fuels. Here are the most suitable situations for nuclear power:
If there is a high concentration of people: In densely populated areas, the demand for reliable and substantial energy is much higher. Nuclear power plants can meet this demand efficiently.If there are few other energy resources: In locations with limited access to renewable energy resources (like solar or wind power), nuclear energy serves as a powerful alternative to meet energy needs.If there is an isolated location: Isolated areas might lack the infrastructure for other energy sources. Nuclear power can provide a consistent and powerful energy supply without requiring frequent fuel deliveries.Other situations, such as having nearby supplies of fossil fuels or having few people in scattered towns, might not derive as much benefit from nuclear energy due to the cost and scale of nuclear power plants.