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REY [17]
3 years ago
14

What is the value of the expression??

Mathematics
1 answer:
Gekata [30.6K]3 years ago
7 0

Answer:

8

Step-by-step explanation:

Using the rule of exponents

\frac{a^{m} }{a^{n} } = a^{(m-n)} for m > n

\frac{a^{m} }{a^{n} } = \frac{1}{a^{(n-m)} } for n > m

Simplifying the expression inside the parenthesis

\frac{6^73^3}{6^63^4}

= \frac{6^{(7-6)} }{3^{(4-3)} }

= \frac{6}{3} = 2

Thus

(2)^{3} = 8

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Franco scored 9 3/5 in a gymnastics cam petition. Which point on the number line represents his score.
wolverine [178]

Answer:

K

Step-by-step explanation:

They scored a 9.35 and K is between 9.25 and 9.5.

8 0
3 years ago
A block is being dragged along a horizontal surface by a constant horizontal force of size 45 N. It covers 8 m in the first 2 s
In-s [12.5K]

Answer:

Solution: To determine mass of the block we can use second Newton' law \vec F=m\vec a

F

=m

a

. The force and acceleration according the problem is directed along a horizontal surface, and we can omit the vector sign in Newton's law. The force we know F=45NF=45N, thus we should deduce the acceleration. The problem does not specify the initial speed at which time began to count, so for the first time interval, we may write the kinematics equation in the form

(1) S_1=v_1\cdot t_1+a\frac {t_1^2}{2}S

1

=v

1

⋅t

1

+a

2

t

1

2

, where S_1=8m, t_1=2s S

1

=8m,t

1

=2s , other quantities we don't know. The similar equation we can write for next time interval

(2) S_2=v_2\cdot t_2+ a\frac{t_2^2}{2}S

2

=v

2

⋅t

2

+a

2

t

2

2

. where S_2=8.5m, t_2=1s S

2

=8.5m,t

2

=1s

Note that during the first time interval, the speed of the block increased in accordance with the law of equidistant motion and it became the initial speed of the second interval, i.e.

(3) v_2=v_1+a\cdot t_1v

2

=v

1

+a⋅t

1

Substitute (3) to (2) we get

(4) S_2=(v_1+a\cdot t_1)\cdot t_2+ a\frac{t_2^2}{2}=v_1\cdot t_2+a\cdot t_1\cdot t_2+a\frac{t_2^2}{2}S

2

=(v

1

+a⋅t

1

)⋅t

2

+a

2

t

2

2

=v

1

⋅t

2

+a⋅t

1

⋅t

2

+a

2

t

2

2

From equation (1) and (4) we can exclude unknown quantity v_1v

1

, then remain only one unknown aa. For determine aa we dived (1) by t_1t

1

, (4) by t_2t

2

to find the average speed at time intervals and subtract (1) from (4).

(5) \frac {S_2}{t_2}-\frac {S_1}{t_1}=v_1+a\cdot t_1 +a\frac {t_2}{2}-(v_1+a\frac{t_1}{2})=a\frac{t_1+t_2}{2}-

t

2

S

2

−

t

1

S

1

=v

1

+a⋅t

1

+a

2

t

2

−(v

1

+a

2

t

1

)=a

2

t

1

+t

2

− For acceleration we get

(6) a=2\cdot ( {\frac{S_2}{t_2}-\frac{S_1}{t_1})/(t_1+t_2)}=2\cdot \frac{(8.5m/s-4m/s)}{3s}=3ms^{-2}a=2⋅(

t

2

S

2

−

t

1

S

1

)/(t

1

+t

2

)=2⋅

3s

(8.5m/s−4m/s)

=3ms

−2

For mass from second Newton's law we get

(7) m=\frac{F}{a}=\frac{45N}{3ms^{-2}}=15kgm=

a

F

=

3ms

−2

45N

=15kg

Answer: The mass of the block is 15 kg

7 0
3 years ago
Lease help me with this problem
Sedaia [141]
. the first one of figohohl
3 0
4 years ago
The length of a photograph is 6 inches less than little twice the width. The photograph is mounted in a frame that is 3 inches w
Free_Kalibri [48]

Answer:

syuare root 270 to get 16.4 then subtract 6 to get 10.4

8 0
3 years ago
Answer all four questions for brainliest. Giving 25 points. Select the symbol that represents the phrase "more than."
noname [10]

Answer:

More than =   >

No more than =  ≤

At most =  ≤

At least =  ≥

Step-by-step explanation:

I don't know how to explain since it's the rules of math. But hoped I help  you!

5 0
3 years ago
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