Answer:
f(x)=60c * 24h
Step-by-step explanation:
Hope this helped!
£2,3,4} and {1, 3, 5}. Find the
Probability that the sum of the two numbers is greater than 3 but less than 7?
Answer:
0.4444 = 44.44% probability that the sum of the two numbers is greater than 3 but less than 7.
Step-by-step explanation:
A probability is the number of desired outcomes divided by the number of total outcomes.
A number is selected at random from each of the sets {2,3,4} and {1, 3, 5}.
The possible values for the sum are:
2 + 1 = 3
2 + 3 = 5
2 + 5 = 7
3 + 1 = 4
3 + 3 = 6
3 + 5 = 8
4 + 1 = 5
4 + 3 = 7
4 + 5 = 9
Find the probability that the sum of the two numbers is greater than 3 but less than 7?
4 of the 9 sums are greater than 3 but less than 7. So
0.4444 = 44.44% probability that the sum of the two numbers is greater than 3 but less than 7.
The simplified result of the expression 3-8 divided by 3-2 is -5 .
Let's simplify the expression step by step :
Given expression: (3 - 8) / (3 - 2)
Step 1: Evaluate the numerator and denominator separately:
A fraction is considered to be simplified when it is expressed in the lowest term. That means the only common divisor between the numerator and denominator is .
Numerator: 3 - 8 = -5
Denominator: 3 - 2 = 1
Step 2: Divide the numerator by the denominator:
-5 / 1 = -5
So, the simplified result of the expression is -5 .
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Answer:
-5
Step-by-step explanation:
Answer:
This means that there is a 95% probability that the confidence interval will contain the true population mean. Thus, P( [sample mean] - margin of error < μ < [sample mean] + margin of error) = 0.95.
Force on a moving charge inside magnetic field is given by
F = BVLsinФ
It shows it is out of the screen .
What is Fleming's Right hand rule?
If the forefinger points in the direction of magnetic field, the thumb point in the direction of motion of the conductor, then the middle finger will point in the direction of induced emf .
So as per right hand rule if we put our fingers of right hand along the velocity of charge and then curl it towards the magnetic field direction then thumb will show the direction of force on moving charge.
So,
If we use the same for the given condition then velocity is given out of the plane and magnetic field is downwards then as per right hand rule direction of force on the moving charge will be "Towards Right" .
Hence the direction of charge is out of the screen .
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Answer:
Force on a moving charge inside magnetic field is given by
So as per right hand rule if we put our fingers of right hand along the velocity of charge and then curl it towards the magnetic field direction then thumb will show the direction of force on moving charge.
Step-by-step explanation:
If we use the same for the given condition then velocity is given out of the plane and magnetic field is downwards then as per right hand rule direction of force on the moving charge will be "Towards Right"
Answer:
Solve for u by simplifying both sides of the inequality, then isolating the variable.
Inequality Form:
u<32
Interval Notation:
(−∞,32)