In order to free your vessel when you run aground in an outboard boat and you are not taking on the water, the very first thing you need to do is just to stop the boat’s engine to stop it from moving then try to lift the out drive, and shift the weight away from the impact zone. Once this is done, you can already now assist the situation and you will be sure that the bat will no longer take into the water. You can now set an anchor in order for you to be safe from the force that can push you and the boat further. You can then use the boat hook so you can check how deep the water is around you.
If you run aground in an outboard boat and you are not taking on water, the first step in attempting to free your vessel is to stop the engine and then lift it.
What is a gasoline engine?A gasoline engine refers to a mechanical system that is designed and developed to use hydrocarbons such as fuels, in order to enable a vehicle or boat to move from one point to another on a water surface.
In Engineering, an outboard gasoline engine is typically installed on the outside of a vehicle or transport system such as a boat, rather than in its interior.
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Refraction of sound waves often takes place when:
A. there are temperature differences in air
B. there are walls around a room to bounce back sound
C. sound wave frequencies are increased
D. complete sound waves slow down
Refraction of sound waves occurs when there are temperature differences in the air, causing the sound waves to change direction due to changes in speed.
Explanation:Refraction of sound waves often takes place when there are temperature differences in the air. This is option A of the student's question. The phenomenon of refraction in sound occurs when sound waves travel from one medium to another medium with a difference in temperature. This causes a change in the speed of sound wave, leading to a change in direction, or refraction. For instance, during a hot day, the air near the ground is hotter than the air above. Here, the speed of sound is faster closer to the ground, causing the sound waves to bend upwards.
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Karen is running forward at a speed of 9 m/s. She tosses her sweaty headband backward at a speed of 20 m/s. The speed of the headband, to the nearest whole number relative to a stationary observer watching Karen, is _____ m/s
Answer:
-11 m/s
Explanation:
a lot simpler than that above me
A movie stunt driver on a motorcycle speeds horizontally off a 50.0 m high cliff. how fast must the motorcycle leave the cliff-top if it is to land on level ground below, 90.0 m from the base of the cliff where the cameras are
Answer:
The Horizontal component of initial velocity (V0x) must be 28.18 m/s.
Explanation:
Vertical distance = y = 50m
Horizontal distance = x = 90 m
We know that,
x = x0 + V0xt
where,
x0 = Initial distance in horizontal direction = 0
V0x = x/t = 90/t ……… (i)
As,
y = y0 + V0y + ½ gt^2
where,
y0 = Initial distance in vertical direction = 0
V0y = Vertical component of initial velocity = 0
So,
t = √(50)(2)/(9.8)
t = 3.194 s
Put t = 3.194 s in equation (i),
V0x = 90/3.194
V0x = 28.18 m/s
Calculate the kinetic energy (in units of kj and ft-lbf) for a 908 kg automobile traveling at 89 km/hour
Kinetic
energy is the energy that is possessed by an object that is moving. It is
calculated by one-half the product of the mass and the square of the velocity
of the object. We calculate as follows:
KE = mv^2 / 2
KE = 908 kg (89 km/hr ( 1000 m / 1 km) ( 1 hr / 3600 s ))^2 / 2
KE =
277479.48 J or 204658.05 ft-lbf
A car is raised a certain distance in a service-station lift, thus giving it potential energy relative to the floor. if it were raised twice as high, how much more potential energy would it have?
When calculating power what two pieces of information are needed?
A. Watts and Time
B. Distance and Mass
C. Work and Mass
D. Work and Time
You are standing 10 meters from a light source. then, you back away from the light source until you are 20 meters away from it. from your perspective, what has happened to the intensity of the wave?
It has decreased by a factor of four
The intensity of the wave has increased by a factor of four.
What is the intensity of light?The amount of visible light emitted per unit solid angle in time. Lumens are the measurements of how much light is emitted from a source in a given second (also known as luminous power or luminous flux). The luminosity is assessed in relation to visual perception.
The inverse Square Law of Light states that light intensity falls off rapidly with distance from its source. The intensity varies with the square of the flash-to-subject distance.
( Intensity at distance 1 ) / ( Intensity at distance 2 )
= ( Distance₂²/ Distance₁² )
In our case, Distance₁=10m and Distance₂=20m, which means that the intensity of the wave has increased by a factor of four. The ratio will be calculated as:-
20²/10²= 400/100=4,
Therefore, the intensity of the wave has increased by a factor of four.
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An fm radio station broadcasts electromagnetic radiation at a frequency of 101.7 mhz. the wavelength of this radiation is ________ m.
Why are renewable sources of energy better than nonrenewable sources?
Answer:
Explanation:
Renewable energy such as solar energy, wind energy, geothermal energy and hydropower are inexhaustible and obtained from natural sources. This energy can be replenished. Whereas, the non-renewable energy sources such as coal and petroleum products are exhaustible energy. They cannot be replenished. It takes millions of years to form non-renewable energy. The non-renewable energy cause pollution but renewable energy is environment-friendly without being depleted. Therefore, renewable sources of energy better than non-renewable sources.
Outside controlled airspace, the minimum flight visibility requirement for vfr flight above 1,200 feet agl and below 10,000 feet msl during daylight hours is
A group of a few thousand stars that are loosely held together by gravity is called a
A farmer places unhatched chicken eggs under a heat lamp. How does the radiation help the eggs?
An architect finds some unlabeled dimensions on a blueprint, and no scale is shown. a 15-ft. wall that has already been built measures 1.5 in. on the drawing. a new wall that has to be built measures 3 in. on the drawing. how long will the new wall be?
Answer:
30
Explanation:
An architect finds some unlabeled dimensions on a blueprint, and no scale is shown. a 15-ft. wall that has already been built measures 1.5 in. on the drawing. a new wall that has to be built measures 3 in. on the drawing. The new wall be 3- ft.
What is blueprint?The location of elements like doors, windows, sinks, and appliances as well as the style of the building are all shown in blueprints, a sort of construction sketch. Simply put: You will need a set of blueprints in order to create a building.
An architect finds some unlabeled dimensions on a blueprint, and no scale is shown. a 15-ft. wall that has already been built measures 1.5 in. on the drawing. a new wall that has to be built measures 3 in. on the drawing. The new wall be 3- ft.
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which of the following is not in our solar system
star
black hole
asteroid
comet
What happens to an electric current when it flows through an object with resistance?
Which of the following accurately describes the differences between the SI and English systems of measurement?
A. The two systems are used interchangeably in the scientific and technical communities.
B. The English system is more commonly used in Europe than in the United States.
C. The English system is preferred for use in the scientific and technical communities due to its ease of use over the SI system.
D. The SI system, which is based on the metric system, has been more widely adopted than the English system, which is harder to use.
(D) The SI system, which is based on the metric system, has been more widely adopted than the English system, which is harder to use describes the difference between the SI and English systems of measurement.
The SI system has many names in order to cover different ranges of the same measure. These names are made by simply adding prefixes such as "kilo","milli" etc. The units of SI system are: metre, are, litre etc which are widely used due to its ease.
A billiard ball strikes and rebounds from the cushion of a pool table perpendicularly. the mass of the ball is 0.38 kg. the ball approaches the cushion with a velocity of +2.50 m/s and rebounds with a velocity of -1.90 m/s. the ball remains in contact with the cushion for a time of 3.40 × 10-3 s. what is the average net force (magnitude and direction) exerted on the ball by the cushion? f = entry field with correct answer entry field with incorrect answer entry field with correct answer
The average net force exerted on the billiard ball by the cushion is -491.76 N in the opposite direction of the initial velocity of the ball.
Explanation:The average net force exerted on the billiard ball by the cushion can be calculated using the impulse-momentum theorem. The impulse is equal to the change in momentum of the ball, which is the product of the mass of the ball and the change in velocity. In this case, the initial velocity is +2.50 m/s, and the final velocity is -1.90 m/s. The change in velocity is therefore (-1.90) - (+2.50) = -4.40 m/s. With a mass of 0.38 kg, the change in momentum is (-4.40) * (0.38) = -1.672 kg*m/s.
The average net force is equal to the impulse divided by the time of contact, which is 3.40 × 10-3 s. Therefore, the average net force is (-1.672) / (3.40 × 10-3) = -491.76 N. Since the force is negative, the direction of the force exerted on the ball by the cushion is opposite to the initial velocity of the ball.
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The average net force exerted on a 0.38 kg billiard ball by a cushion when it rebounds perpendicularly with a change in velocity from +2.50 m/s to -1.90 m/s during a contact time of 3.40 × 10-3 s is 494 N. This force is in the direction opposite to the motion of the ball.
Explanation:The direction of the force exerted by the cushion would be in the opposite direction of the movement of the ball and its magnitude can be calculated using Newton's second law, F = ma, where F is force, m is mass, and a is acceleration. Here, we first need to calculate the acceleration by subtracting final velocity from initial velocity and dividing it by the time of contact. So, acceleration = (final velocity - initial velocity) / time = (-1.90 m/s - 2.50 m/s) / 3.40 × 10-3 s = -1300 m/s². Now, we can find the force: F = ma = 0.38 kg * -1300 m/s² = -494 N. Hence the cushion exerts an average force of 494 N in the negative or opposite direction.
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The volume of a gas with a pressure of 1.2 atm increases from 1.0 l to 4.0 l. what is the final pressure of the gas, assuming constant temperature? tip: use boyle's law
Answer:
Final pressure of he gas is 0.3 atm.
Explanation:
It is given that,
Initial pressure of the gas, P₁ = 1.2 atm
Initial volume of the gas, V₁ = 1 L
Final volume of the gas, V₂ = 4 L
We need to find the final pressure of the gas. It can be calculated using Boyle's law as :
[tex]P_1V_1=P_2V_2[/tex]
[tex]P_2=\dfrac{P_1V_1}{V_2}[/tex]
[tex]P_2=\dfrac{1.2\ atm\times 1\ L}{4\ L}[/tex]
[tex]P_2=0.3\ atm[/tex]
So, the final pressure of the gas at constant temperature is 0.3 atm. Hence, this is the required solution.
Four students are playing a game of tug-of-war. The two students on the right have masses of 54 kg and 57 kg, and pull with a combined force of 140 N. The two students on the left have masses of 53 kg and 55 kg and pull with a combined force of 120 N. Calculate the magnitude and direction of the acceleration of the students.
We have to first obtain the resultant force and use it to obtain the acceleration as 0.18 ms-2.
What is the resultant force?The resultant force is that singular force that has the same effect in magnitude and direction as two or more forces acting together. Now since the students involved in the thug of war all lie on the same line.
Let us take the right to be positive and the left to be negative, the resultant force now is; 140 N - 120 N = 20N whose direction is to the right.
The total mass to the right is 111Kg hence the acceleration is;
111Kg * a = 20 N
a = 20 N/111Kg
a = 0.18 ms-2
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Papers scattered randomly across the desk represents high entropy and are a good example of which law?
A.the zeroth law of thermodynamics
B.the first law of thermodynamics
C.the second law of thermodynamics
D the law of conservation of energy
Answer:
C is the best answer:)
Explanation:
How many hours are required to make a 4400-km trip across the united states if you average 80 km/h?
time = distance/speed
Final answer:
The time required to make a 4400-km trip across the United States, averaging 80 km/h, is 55 hours.
Explanation:
To calculate the time required for a trip, the formula you use is time (t) equals the distance (d) divided by the average speed (v), often expressed as t = d / v. In this case, the distance of the trip is 4400 kilometers, and the average speed is 80 kilometers per hour (km/h). Therefore, the time required for the trip is calculated as follows:
Distance (d) = 4400 km
Average speed (v) = 80 km/h
Time (t) = Distance ÷ Average speed
Time (t) = 4400 km ÷ 80 km/h
Time (t) = 55 hours
The trip would take 55 hours if you average 80 km/h.
If the nile river empties into the mediterranean sea in which direction does it flow
The Nile River empties into the Mediterranean Sea in the direction of flow from South to North. It is a common mistaken belief that water will flow from North to South because of the Earth’s rotation. It is not the case for Nile River since it is located at the elevated land of a hill. It is natural that the water flow must be from top down to the bottom. The Nile River will flood only once a year and its flow will start at Lake Victoria down to the Mediterranean coast.
Why a bouncing ball doesn't have simple harmonic motion . Explain with detail
A bouncing ball loses some of its energy at every bounce. The ball and the Earth collide, and during this collision momentum and kinetic energy are transferred. If the kinetic energy of the ball before the collision does not equal the kinetic energy of the ball after the collision, the ball cannot bounce back to the height of previous fall because it does not have enough kinetic energy to convert to potential energy.
Moreover, simple harmonic motion requires a force whose magnitude is proportional to the displacement and whose direction points towards the equilibrium point of the motion, called a restoring force, and this is not the case for a bouncing ball. The ball is under the influence of gravity during the entire process and the repulsive forces during the collision. Neither are restoring forces, so a bouncing ball's motion is not considered simple harmonic.
If the pressure on a gas sample is tripled and the absolute temperature is quadrupled, by what factor will the volume of the sample change?
How long does it take anya to cover the distance of 5.00 miles ?
To determine the time it takes to cover 5.00 miles at 9.5 mi/h, you can use the formula Time = Distance / Speed, giving approximately 31.58 minutes.
Explanation:To calculate how long it takes Anya to cover the distance of 5.00 miles, given the speed of a runner, we can use the formula:
Time = Distance / Speed
If a marathon runner averages 9.5 mi/h, we would substitute the values into the formula to find the time:
Time = 5.00 miles / 9.5 mi/h
Time = 0.5263 hours
To convert the time from hours to minutes, we multiply by 60 minutes per hour:
Time = 0.5263 hours × 60 minutes/hour
Time = 31.58 minutes
Therefore, it would take approximately 31.58 minutes for Anya to cover a distance of 5.00 miles at a speed of 9.5 mi/h.
The result of changing a physical sound wave into an analogous electrical signal using a transducer (such as a microphone) is called
The result of changing a physical sound wave into an analogous electrical signal using a transducer (such as a microphone) is called analogue audio. In this system, the rapid electrical level is directly proportional to the rapid air pressure taken by the transducer. The analogue signal is then augmented and can be kept on an analogue medium such as tape or transformed further into a succession of discrete mathematical numbers. The advantages of using this device is that it yields a subtle sound and is pleasing to the ear by pushing the signal level and overdriving it. But the disadvantages are editing it would be tedious and prone to degradation.
A gas occupies 210 ml at -73°c. to have the same gas occupy 360 ml: should the temperature be increased or decreased? what is the new temperature? k
Answer:
1. Increased
2. 340
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Explanation:
Which distance can be most accurately measured with a ruler?
a. the size of an object under a microscope
b. the width of a book
c. the length of a river
d. the distance between two cities?
The answer is a width of a textbook. It is usually has centimeter and millimeter units on it. Since rulers are most commonly 15 or 30 cm long, it could only be used to measure the length or width of small things like small tin, or the length of a piece of paper. A length of a river and the distance between two cities cannot be measured by a ruler, there is proper equipment for that, the same goes for the size of an object under the microscope.
When you are paddling a canoe, you push the water backwards with your paddle, which in turn will push you forward. Which law of motion is being described in this scenario?
A.Law of Inertia
B.Newton's Second Law of Motion
C.Newton's Third Law of Motion
D.Newton's First Law of Motion
_______ is the most effective nuclear bullet.
Neutron is the most effective nuclear bullet.
What are nuclear bullets?Even as depleted uranium, or DU, is extraordinarily dense and may punch via thick tank armor, many accept as true that those shells release small doses of radiation, like miniature neutron bombs. The U.S. has used DU shells in Iraq, Afghanistan, and Syria.
There are currently no recognized gun-type guns in the provider: advanced nuclear weapon states tended to abandon the design in favor of implosion-type weapons, boosted fission weapons, and thermonuclear weapons. New nuclear bullet states have a tendency to increase boosted fission and thermonuclear guns best.
There are currently no known gun-kind weapons in provide: advanced nuclear weapon states tended to desert the design in choose of implosion-kind weapons, boosted fission weapons, and thermonuclear weapons. New nuclear weapon states generally tend to expand boosted fission and thermonuclear guns handiest.
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