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Let and be different solutions of problem (5.1a) and (5.1b).
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x i and x r1 are different solutions of population.
There are different solutions for the architecture of the time distribution sub-network and choosing one of them depends on cost, precision, reliability and operational security.
There are different solutions for this type of attack depending on what is blocked: Landmark blacklisting: there are three main solutions to avoid landmark blacklisting.
That's a classic "health care is different" solution to the problem of excess health-care costs: pass a law guaranteeing the "sale price" to publicly funded patients.
Let u and v be two different solutions of the space-time fractional Burgers' equation (21).
Observe that the unique solvability of this inequality follows from the monotonicity of A and the strict monotonicity of U s. Indeed, let x1 and x2 be two different solutions of (14).
are two different solutions of (1.5) and (2.4), then are the two different solutions of (1.5) and (1.6).
Then, for each p ∈ C ( Ω ∗, B ), equation (2.1) has exactly one solution f ∈ C ( Ω ∗, B ). Proof Suppose that f 1, f 2 ∈ C ( Ω ∗, B ) are two different solutions of equation (2.1).
After the collection of the fluid, 50 mL of the fluid was centrifuged (800 rpm, 4°C, 25 minutes); next supernatant was separated and erythrocytes were lysed with different solutions of NaCl.
Absorption measurements were performed at 660 nm, and calibration was done with different solutions of toluidine.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com